Clinical Approach to Cough

Comprehensive Practical Framework

1. Symptom Overview

Understanding the clinical significance and classification of cough

Cough is one of the most common symptoms encountered in primary care, accounting for approximately 30 million physician visits annually in the United States alone. It represents roughly 8% of all outpatient visits and is the single most common reason for seeking medical attention. Chronic cough affects 10-20% of the adult population worldwide and significantly impacts quality of life, causing sleep disturbance, social embarrassment, urinary incontinence, and even rib fractures in severe cases. Understanding the systematic approach to cough is essential for every family medicine practitioner.

Definition

Cough is a sudden, forceful expulsion of air from the lungs through the mouth. It is a complex protective reflex mechanism involving coordinated activation of respiratory muscles following stimulation of sensory receptors in the airways and other anatomical sites. Cough serves the vital physiological function of clearing the airways of secretions, foreign particles, and irritants.

Classification by Duration

CategoryDurationCommon CausesClinical Significance
AcuteLess than 3 weeksViral upper respiratory tract infection, acute bronchitis, pneumonia, pertussis, allergic rhinitis exacerbationMost self-limited; focus on identifying serious causes such as pneumonia or pulmonary embolism
Subacute3 to 8 weeksPost-infectious cough, pertussis, bacterial sinusitis, asthma exacerbationOften represents resolving acute process; consider pertussis and post-infectious causes
ChronicGreater than 8 weeksUpper airway cough syndrome, asthma, gastroesophageal reflux disease, chronic bronchitis, angiotensin-converting enzyme inhibitor useRequires systematic evaluation; multiple etiologies often coexist

Classification by Character

Productive (Wet) Cough

Cough associated with sputum production. The character and color of sputum provides diagnostic clues: clear or white suggests viral infection or asthma; yellow or green suggests bacterial infection or eosinophilic inflammation; rust-colored suggests pneumococcal pneumonia; pink and frothy suggests pulmonary edema; blood-streaked warrants urgent evaluation for malignancy, tuberculosis, or pulmonary embolism.

Non-Productive (Dry) Cough

Cough without significant sputum production. Common in viral upper respiratory infections, angiotensin-converting enzyme inhibitor-induced cough, early asthma, gastroesophageal reflux disease, and interstitial lung disease. A persistent dry cough in a non-smoker with normal chest radiograph suggests one of “The Big Three” causes.

Sputum Characteristics and Their Significance

Sputum AppearanceTypical CausesClinical Considerations
Clear or mucoidViral infection, asthma, chronic bronchitisGenerally benign; may represent baseline in chronic conditions
Yellow or green (purulent)Bacterial infection, eosinophilic bronchitisColor alone does not reliably distinguish viral from bacterial
Rust-coloredPneumococcal pneumoniaClassic but not pathognomonic; requires chest imaging
Pink and frothyPulmonary edemaUrgent evaluation for heart failure required
Blood-streaked or frank hemoptysisBronchitis, malignancy, tuberculosis, pulmonary embolism, bronchiectasisAlways warrants thorough investigation; red flag symptom

Classification by Pattern and Timing

PatternDescriptionSuggests
Nocturnal predominanceWorse when lying down at nightAsthma, gastroesophageal reflux disease, heart failure, upper airway cough syndrome
Morning predominanceWorst upon awakeningChronic bronchitis, bronchiectasis (productive of large volume sputum)
Post-prandialOccurs after eatingGastroesophageal reflux disease, aspiration
Exercise-inducedTriggered by physical activityAsthma (especially exercise-induced bronchoconstriction)
Seasonal patternPredictable occurrence with seasonsAllergic rhinitis, seasonal asthma
ParoxysmalSudden bursts of repeated coughingPertussis (whooping cough), foreign body, asthma
Barking or seal-likeHarsh, barking qualityCroup, tracheal pathology, psychogenic cough

Key Concept: “The Big Three”

In non-smoking adults with chronic cough and a normal chest radiograph, three conditions account for more than 90% of cases:

  • Upper airway cough syndrome (previously called post-nasal drip syndrome) — approximately 20-40%
  • Asthma (including cough-variant asthma) — approximately 20-30%
  • Gastroesophageal reflux disease — approximately 10-40%

Importantly, up to 25% of patients have multiple simultaneous causes contributing to their cough. A systematic approach that addresses all three possibilities is essential for successful management.

Impact on Quality of Life

Understanding the Burden of Chronic Cough

Chronic cough significantly impairs quality of life. Common complications and associated symptoms include:

  • Sleep disturbance — reported by up to 75% of patients
  • Urinary incontinence — affects up to 55% of women with chronic cough
  • Chest and abdominal wall pain — from repeated muscular strain
  • Rib fractures — in severe or prolonged cases
  • Social embarrassment — leading to avoidance of social situations
  • Syncope or pre-syncope — cough syncope from decreased venous return
  • Headache — from increased intracranial pressure during coughing

2. Pathophysiology and Mechanisms

Understanding the underlying mechanisms of cough

Understanding the cough reflex arc is fundamental to comprehending why various conditions cause cough and how treatments work. The cough reflex is a complex, coordinated response that can be triggered from multiple anatomical sites, explaining why such diverse conditions—from ear wax impaction to gastroesophageal reflux—can all present with cough as the primary symptom.

The Cough Reflex Arc

ComponentStructureFunction
ReceptorsCough receptors in airways, pharynx, external ear canal, esophagus, pericardium, diaphragmDetect mechanical and chemical stimuli; initiate afferent signal
Afferent PathwayVagus nerve (primary), trigeminal nerve, glossopharyngeal nerve, phrenic nerveTransmit sensory information from receptors to the brainstem cough center
Integration CenterMedullary cough center in the brainstem (nucleus tractus solitarius region)Process afferent input and coordinate efferent motor response; subject to voluntary control from higher cortical centers
Efferent PathwayVagus nerve, phrenic nerve, spinal motor nerves to intercostal and abdominal musclesTransmit motor commands to effector muscles
EffectorsDiaphragm, intercostal muscles, abdominal muscles, laryngeal musclesExecute the three phases of cough: inspiratory, compressive, and expulsive

The Three Phases of Cough

1. Inspiratory Phase

Action: Deep inspiration with glottis open

Mechanism: Contraction of diaphragm and external intercostal muscles

Purpose: Maximizes lung volume to generate sufficient expiratory force

2. Compressive Phase

Action: Forced expiration against closed glottis

Mechanism: Contraction of abdominal and internal intercostal muscles with glottis closure

Purpose: Builds intrathoracic pressure up to 300 mmHg

3. Expulsive Phase

Action: Sudden glottis opening with explosive air release

Mechanism: Rapid airflow (up to 500 mph) through narrowed airways

Purpose: Expels mucus, foreign particles, and irritants from airways

Cough Receptor Types and Clinical Relevance

Rapidly Adapting Receptors (RARs)

Location: Epithelium of larger airways (trachea, main bronchi)

Stimuli: Mechanical stimulation, rapid lung inflation/deflation, inhaled irritants

Clinical relevance: Activated by mucus accumulation, foreign bodies, and airway instrumentation; mediate cough from bronchitis and aspiration

C-Fiber Receptors

Location: Throughout airways, lung parenchyma, and bronchial vasculature

Stimuli: Chemical irritants (capsaicin, bradykinin, prostaglandins), inflammatory mediators, acid

Clinical relevance: Key role in inflammatory conditions (asthma), angiotensin-converting enzyme inhibitor cough (bradykinin), and gastroesophageal reflux disease; become sensitized in chronic cough

Slowly Adapting Receptors (SARs)

Location: Airway smooth muscle

Stimuli: Lung stretch and inflation

Clinical relevance: Primary role in Hering-Breuer reflex; modulate cough sensitivity rather than directly initiating cough; may contribute to cough in hyperinflated states

Anatomical Distribution of Cough Receptors

Receptor Density Principle: Cough receptor density is highest in the larynx and carina, explaining why these areas are most sensitive to triggering cough. The density progressively decreases toward the peripheral airways.

Anatomical SiteReceptor DensityAfferent NerveClinical Correlation
LarynxVery highSuperior laryngeal branch of vagusLaryngeal hypersensitivity syndrome; post-viral vagal neuropathy
Carina and main bronchiVery highVagus nerveCentral tumors; foreign body impaction
TracheaHighVagus nerveTracheitis; tracheomalacia
PharynxModerateGlossopharyngeal nerveUpper airway cough syndrome; pharyngitis
External auditory canalLowArnold’s nerve (auricular branch of vagus)Arnold’s nerve reflex; ear wax impaction or hair touching tympanic membrane
Distal esophagusLowVagal afferentsGastroesophageal reflux disease (distal esophageal-tracheobronchial reflex)
Pericardium and diaphragmLowPhrenic nervePericarditis; subdiaphragmatic abscess

How Common Conditions Cause Cough

ConditionMechanismTreatment Implication
Upper airway cough syndrome (post-nasal drip)Secretions from nasal and sinus mucosa drain posteriorly, mechanically stimulating pharyngeal and laryngeal cough receptors; histamine release sensitizes receptorsFirst-generation antihistamines (anticholinergic properties reduce secretions), decongestants, nasal corticosteroids
Asthma and cough-variant asthmaEosinophilic airway inflammation releases mediators (prostaglandins, leukotrienes, histamine) that sensitize C-fiber receptors; bronchoconstriction stimulates rapidly adapting receptorsInhaled corticosteroids to reduce inflammation; bronchodilators for acute relief
Gastroesophageal reflux diseaseTwo mechanisms: (1) Microaspiration of gastric contents directly irritates laryngeal and tracheobronchial receptors; (2) Esophageal-tracheobronchial vagal reflex—acid in distal esophagus triggers cough without aspirationProton pump inhibitors (high-dose, twice daily); lifestyle modifications; may require 2-3 months for full effect
Angiotensin-converting enzyme inhibitor-induced coughInhibition of angiotensin-converting enzyme prevents breakdown of bradykinin and substance P in airways; accumulation of these mediators sensitizes C-fiber receptorsDiscontinue angiotensin-converting enzyme inhibitor; switch to angiotensin receptor blocker (does not affect bradykinin metabolism); cough resolves in 1-4 weeks
Non-asthmatic eosinophilic bronchitisEosinophilic inflammation of airways without bronchial hyperreactivity; eosinophil-derived mediators sensitize cough receptorsInhaled corticosteroids; responds similarly to asthma treatment but without bronchodilator benefit
Post-infectious coughViral infection damages airway epithelium, exposing sensory nerve endings; transient receptor hypersensitivity and inflammation persist after infection resolvesUsually self-limited (3-8 weeks); inhaled corticosteroids or ipratropium may accelerate resolution
Chronic bronchitisMucus hypersecretion from goblet cell hyperplasia stimulates rapidly adapting receptors; chronic inflammation sensitizes C-fibersSmoking cessation essential; mucolytics may provide modest benefit
Interstitial lung diseaseFibrosis distorts airways and stimulates mechanoreceptors; associated inflammation activates C-fibers; traction bronchiectasis contributesTreat underlying disease; antifibrotic therapy in idiopathic pulmonary fibrosis; symptomatic treatment challenging

Often Overlooked Mechanism: Arnold’s Nerve Reflex

The auricular branch of the vagus nerve (Arnold’s nerve) innervates the external auditory canal and tympanic membrane. Stimulation of this area—by ear wax, hair touching the eardrum, hearing aids, or even otoscope examination—can trigger coughing in 2-4% of the population. This “Arnold’s nerve reflex” or “ear-cough reflex” is frequently forgotten as a cause of unexplained chronic cough. Always examine the ears in patients with refractory cough!

Cough Hypersensitivity Syndrome

A Unifying Concept in Chronic Cough

Cough hypersensitivity syndrome describes a state of heightened cough reflex sensitivity that may explain why some patients cough excessively to stimuli that would not trigger cough in healthy individuals. Key features include:

  • Central sensitization: Amplified processing of cough signals in the brainstem and cortex
  • Peripheral sensitization: Lowered threshold of airway sensory nerves due to inflammation or nerve damage
  • Laryngeal hypersensitivity: Excessive response to laryngeal stimulation, often with associated throat symptoms
  • Clinical clues: Patients report cough triggered by talking, laughing, strong odors, cold air, or eating—stimuli that do not normally cause cough

This concept helps explain patients with chronic refractory cough who have undergone extensive evaluation and treatment without resolution.

3. History Taking

A comprehensive approach to eliciting the cough history

Red Flags — Require Urgent Evaluation

  • Hemoptysis — Malignancy, tuberculosis, pulmonary embolism, bronchiectasis
  • Unintentional weight loss greater than 5% — Malignancy, tuberculosis, chronic infection
  • Night sweats — Tuberculosis, lymphoma, other malignancy
  • Fever persisting beyond 1 week — Pneumonia, tuberculosis, abscess, empyema
  • Hoarseness lasting more than 3 weeks — Laryngeal carcinoma, recurrent laryngeal nerve involvement
  • Smoker over age 40 with new or changed cough — Lung cancer screening indicated
  • Significant dyspnea or hypoxia — Pneumonia, pulmonary embolism, heart failure
  • Choking episode or sudden onset — Foreign body aspiration

Systematic History: The “COUGHS” Approach

Use the mnemonic “COUGHS” to ensure comprehensive history taking:

  • CCharacter and Course: What does the cough sound like (dry, wet, barking, whooping)? When did it start? Is it getting better, worse, or staying the same? Continuous or episodic?
  • OOutput and Other symptoms: Is there sputum? What color and volume? Associated symptoms: wheeze, dyspnea, chest pain, heartburn, nasal congestion, throat clearing, fever?
  • UUnderstand triggers and timing: What makes it worse (cold air, exercise, eating, lying down, talking, strong odors)? What makes it better? Time of day pattern (nocturnal, morning, post-prandial)?
  • GGeneral history: Past medical history (asthma, allergies, reflux, heart disease), medications (especially angiotensin-converting enzyme inhibitors), smoking history (pack-years), occupational exposures, travel, pets
  • HHow does it affect you?: Impact on sleep, work, social activities. Complications (incontinence, syncope, chest wall pain). Previous treatments tried and their effects
  • SSick contacts and setting: Household members with similar symptoms? Recent upper respiratory infection? Pertussis exposure? Tuberculosis risk factors?

Targeted Questions by Suspected Cause

Suspected CauseKey FeaturesAsk This Question
Upper airway cough syndrome (post-nasal drip)Throat clearing, nasal congestion, sensation of secretions in throat“Do you feel mucus dripping down the back of your throat?” “Do you frequently need to clear your throat?”
Asthma or cough-variant asthmaEpisodic wheeze, known triggers, nocturnal symptoms, personal or family history of atopy“Does cold air, exercise, or exposure to dust or pets trigger your cough?” “Do you ever hear a whistling sound when you breathe?”
Gastroesophageal reflux diseaseHeartburn, regurgitation, worse after meals or when supine; may occur without typical reflux symptoms“Is your cough worse after eating or when lying down?” “Do you have heartburn, acid taste, or regurgitation?” “Do you wake up coughing at night?”
Angiotensin-converting enzyme inhibitor-induced coughDry, tickling cough; onset typically weeks to months after starting medication“Are you taking any blood pressure medications?” “When did you start taking [medication name]?” “Did the cough start after beginning this medication?”
Pertussis (whooping cough)Paroxysmal cough with inspiratory “whoop,” post-tussive vomiting, prolonged course“Do you have fits of coughing that leave you breathless?” “Do you vomit after coughing spells?” “Has anyone you know been diagnosed with whooping cough?”
Chronic bronchitisProductive cough most days for at least 3 months in 2 consecutive years; smoking history“Do you cough up phlegm most days?” “How many years have you smoked, and how many cigarettes per day?”
BronchiectasisLarge volume purulent sputum, recurrent respiratory infections, morning cough productive of cupfuls“Do you cough up large amounts of sputum, especially in the morning?” “Have you had frequent lung infections?”
Lung cancerChange in chronic cough character, hemoptysis, weight loss, smoking history“Has the character of your cough changed recently?” “Have you coughed up any blood?” “Have you lost weight without trying?”
Heart failureOrthopnea, paroxysmal nocturnal dyspnea, peripheral edema, pink frothy sputum“Do you need to prop yourself up on pillows to sleep?” “Do you wake up suddenly short of breath at night?” “Have your ankles been swelling?”
Interstitial lung diseaseProgressive dyspnea, dry cough, occupational or medication exposures, connective tissue disease“Are you becoming more short of breath with activities?” “Have you been exposed to asbestos, silica, or birds?” “Do you have any autoimmune conditions?”

Medication and Social History

Medications That Cause Cough

  • Angiotensin-converting enzyme inhibitors — Most common drug-induced cause; affects 5-20% of users; dry, tickling cough; may occur weeks to months after initiation; resolves 1-4 weeks after discontinuation
  • Beta-blockers (non-selective) — Can cause bronchospasm and cough in susceptible individuals, especially those with asthma or chronic obstructive pulmonary disease
  • Inhaled medications — Inhaled corticosteroids (throat irritation, dysphonia), inhaled bronchodilators (paradoxical bronchospasm)
  • Nitrofurantoin — Can cause acute or chronic pulmonary toxicity with cough
  • Methotrexate and other immunosuppressants — Pneumonitis with dry cough and dyspnea
  • Amiodarone — Pulmonary toxicity in up to 10% of users
  • Statins — Rarely associated with interstitial lung disease

Social and Occupational History

  • Smoking: Quantify in pack-years (packs per day × years smoked); current smokers: chronic bronchitis, lung cancer risk; former smokers: calculate time since cessation
  • Vaping and e-cigarettes: Associated with e-cigarette or vaping product use-associated lung injury (EVALI); ask specifically about THC-containing products
  • Occupation: Asbestos (construction, shipbuilding), silica (mining, sandblasting), coal dust, grain dust, animal proteins, isocyanates (painting, plastics)
  • Home environment: Mold, birds (hypersensitivity pneumonitis), pets, heating and cooling systems, recent renovations
  • Travel: Tuberculosis exposure (endemic areas), fungal infections (histoplasmosis, coccidioidomycosis)
  • Hobbies: Bird keeping (bird fancier’s lung), hot tubs (hot tub lung from mycobacteria)

Duration-Specific History Focus

Acute Cough (less than 3 weeks)

  • Preceding upper respiratory infection symptoms?
  • Sick contacts?
  • Fever, purulent sputum?
  • Sudden onset (foreign body)?
  • Pleuritic chest pain, dyspnea (pneumonia, pulmonary embolism)?

Subacute Cough (3-8 weeks)

  • Did it follow an upper respiratory infection?
  • Paroxysms with whooping or post-tussive vomiting (pertussis)?
  • Gradual improvement or persisting at same intensity?
  • New medications started?
  • Sinus symptoms (bacterial sinusitis)?

Chronic Cough (greater than 8 weeks)

  • Symptoms suggesting “The Big Three”?
  • On angiotensin-converting enzyme inhibitor?
  • Smoker or former smoker?
  • Previous treatments tried and response?
  • Any red flag symptoms?

4. Physical Examination

A systematic head-to-toe approach for cough

Systematic Framework: Use the “Head to Extremities” approach for complete examination of patients presenting with cough. Remember that cough receptors exist in multiple anatomical locations beyond the lungs, so a thorough examination includes ears, nose, throat, cardiovascular system, and abdomen.

General Inspection

  • Appearance: Comfortable at rest versus respiratory distress? Cachexia suggesting malignancy? Cushingoid features from chronic steroid use?
  • Respiratory effort: Tachypnea? Use of accessory muscles? Pursed lip breathing? Tripod positioning?
  • Color: Central cyanosis (hypoxemia)? Pallor (anemia)? Plethora (polycythemia from chronic hypoxia)?
  • Voice and speech: Hoarseness (laryngeal pathology, recurrent laryngeal nerve palsy)? Stridor (upper airway obstruction)? Ability to speak in full sentences?
  • Cough character: If patient coughs during examination, note: dry versus productive, quality (barking, whooping), forcefulness, whether it sounds painful

Vital Signs

Vital SignWhat to Look ForClinical Significance
TemperatureFever (greater than 38°C or 100.4°F)Infection (pneumonia, bronchitis, tuberculosis, sinusitis); absence of fever does not exclude infection in elderly or immunocompromised
Heart RateTachycardia (greater than 100 beats per minute)Infection, hypoxemia, pulmonary embolism, anxiety, thyrotoxicosis; bradycardia may indicate beta-blocker use
Blood PressureHypotension or hypertensionHypotension suggests sepsis; hypertension—is patient on angiotensin-converting enzyme inhibitor?
Respiratory RateTachypnea (greater than 20 breaths per minute)Pneumonia, pulmonary embolism, heart failure, metabolic acidosis; part of pneumonia severity scores (CURB-65, PSI)
Oxygen SaturationHypoxemia (less than 94% on room air)Significant lower respiratory tract involvement; consider pneumonia, pulmonary embolism, heart failure, interstitial lung disease

Head, Ears, Eyes, Nose, and Throat Examination

Ears (Arnold’s Nerve)

  • External auditory canal: Cerumen impaction? Hair touching tympanic membrane?
  • Tympanic membrane: Otitis media? Perforation?
  • Does otoscope examination trigger coughing? (Arnold’s nerve reflex)

Nose

  • Nasal mucosa: Pale and boggy (allergic rhinitis)? Erythematous (infectious)?
  • Nasal polyps visible?
  • Septal deviation?
  • Purulent discharge (sinusitis)?

Eyes

  • Allergic shiners (dark circles from venous congestion)?
  • Conjunctival injection (allergy, viral infection)?
  • Scleral icterus (if considering metastatic disease)?

Oropharynx

  • Cobblestone appearance of posterior pharynx (post-nasal drip)?
  • Tonsillar enlargement or exudate?
  • Mucus pooling in posterior pharynx?
  • Dental disease (aspiration risk)?

Neck Examination

  • Lymphadenopathy: Cervical (infection, malignancy), supraclavicular (concerning for thoracic malignancy—Virchow’s node on left)
  • Thyroid: Goiter causing tracheal compression?
  • Trachea: Midline or deviated? Tracheal tug (severe airflow obstruction)?
  • Jugular venous pressure: Elevated (heart failure, cor pulmonale, superior vena cava obstruction)?

Respiratory Examination

Inspection

  • Chest wall deformity: Kyphoscoliosis, pectus excavatum (restrictive lung disease)?
  • Barrel chest: Increased anteroposterior diameter (chronic obstructive pulmonary disease, hyperinflation)?
  • Symmetry of chest expansion: Asymmetry suggests unilateral pathology (effusion, consolidation, pneumothorax)
  • Scars: Previous thoracic surgery, chest tube sites?

Palpation

  • Chest expansion: Reduced overall (chronic obstructive pulmonary disease) or asymmetric (unilateral disease)?
  • Tactile fremitus: Increased (consolidation), decreased (effusion, pneumothorax)
  • Chest wall tenderness: Musculoskeletal cause of cough-related pain? Rib fracture from severe coughing?

Percussion

  • Dullness: Consolidation (pneumonia), pleural effusion, mass
  • Hyperresonance: Pneumothorax, severe emphysema, hyperinflation
  • Compare sides systematically: Apex to base, anterior and posterior

Auscultation

FindingDescriptionConditions
Polyphonic wheezeMultiple musical pitches, predominantly expiratoryAsthma, chronic obstructive pulmonary disease, bronchitis (diffuse airway narrowing)
Monophonic wheezeSingle constant pitch, may be inspiratory or expiratoryFixed airway obstruction: tumor, foreign body, mucus plug (focal lesion)
StridorHigh-pitched inspiratory sound, often audible without stethoscopeUpper airway obstruction: laryngeal tumor, epiglottitis, vocal cord dysfunction, tracheal stenosis
Fine crackles (rales)Velcro-like sounds, typically end-inspiratory, do not clear with coughInterstitial lung disease (pulmonary fibrosis), early pulmonary edema, pneumonia
Coarse cracklesLouder, lower-pitched, early inspiratory, may clear with coughBronchiectasis, chronic bronchitis, pneumonia with secretions
Bronchial breath soundsHarsh, tubular quality heard over peripheral lung (normally only over trachea)Consolidation (pneumonia), lung collapse with patent airway
Diminished breath soundsReduced air entry compared to contralateral sidePleural effusion, pneumothorax, severe emphysema, obesity
Pleural friction rubCreaking, grating sound during both inspiration and expirationPleuritis (infection, pulmonary embolism, malignancy, autoimmune disease)

Cardiovascular Examination

  • Jugular venous pressure: Elevated suggests right heart failure, cor pulmonale, or fluid overload
  • Apex beat: Displaced (cardiomegaly)? Heaving (left ventricular hypertrophy)?
  • Heart sounds: Third heart sound (S3) suggests heart failure; fourth heart sound (S4) suggests diastolic dysfunction
  • Murmurs: Mitral stenosis (associated with hemoptysis), pulmonary hypertension signs
  • Peripheral edema: Bilateral pitting edema suggests heart failure; unilateral suggests deep vein thrombosis (consider pulmonary embolism)

Abdominal Examination

  • Hepatomegaly: Heart failure (congestive hepatomegaly), metastatic lung cancer
  • Ascites: Heart failure, hepatic metastases, malignancy
  • Epigastric tenderness: May suggest gastroesophageal reflux disease, peptic ulcer disease
  • Obesity: Contributes to gastroesophageal reflux disease, obstructive sleep apnea (associated with chronic cough)
  • Hernias: Chronic cough can cause or exacerbate inguinal and umbilical hernias

Extremities

  • Clubbing: Lung cancer, bronchiectasis, interstitial lung disease, cystic fibrosis, empyema; absent in chronic obstructive pulmonary disease and asthma
  • Peripheral cyanosis: Poor perfusion, hypoxemia
  • Nicotine staining: Confirms active smoking
  • Joint abnormalities: Rheumatoid arthritis, other connective tissue diseases (associated interstitial lung disease)
  • Calf tenderness or asymmetry: Deep vein thrombosis (consider pulmonary embolism as cause of cough)

Expected Physical Examination Findings by Etiology

ConditionGeneral AppearanceRespiratory FindingsOther Findings
Upper airway cough syndromeUsually well-appearingOften normal; may have audible throat clearingCobblestone pharynx, nasal mucosal changes, post-nasal drip visible
AsthmaNormal between attacks; distressed during exacerbationMay be normal; polyphonic wheeze during exacerbation; prolonged expiratory phaseEczema, allergic rhinitis signs (atopic triad)
Gastroesophageal reflux diseaseOften normalUsually normalEpigastric tenderness possible; obesity; dental erosions (severe cases)
Angiotensin-converting enzyme inhibitor coughNormalNormalNormal; history of antihypertensive use is the key
Chronic obstructive pulmonary diseaseBarrel chest, pursed lip breathing, use of accessory musclesHyperresonance, diminished breath sounds, wheezes, prolonged expirationNicotine staining; cachexia in advanced disease
PneumoniaIll-appearing, febrile, tachypneicDullness to percussion, bronchial breath sounds, crackles, increased fremitusHypoxemia, tachycardia
Heart failureDyspneic, orthopneicBilateral basal crackles, pleural effusions (dullness)Elevated jugular venous pressure, S3 gallop, peripheral edema, hepatomegaly
Interstitial lung diseaseProgressive dyspnea, may appear comfortable at restFine “Velcro” crackles at bases; may have clubbingSigns of underlying connective tissue disease; clubbing
Lung cancerMay have cachexia, weight loss evidentMay be normal; localized wheeze, signs of effusion or collapse possibleLymphadenopathy (supraclavicular), clubbing, paraneoplastic signs
BronchiectasisUsually well; productive cough evidentCoarse crackles, often at bases; may have wheezesClubbing may be present

Important Teaching Point

Normal physical examination is common! Many of the most frequent causes of chronic cough present with entirely normal physical examination findings. Upper airway cough syndrome, gastroesophageal reflux disease, cough-variant asthma, non-asthmatic eosinophilic bronchitis, and angiotensin-converting enzyme inhibitor-induced cough typically have normal chest examinations. A normal examination does not exclude significant pathology and should not delay appropriate investigation in patients with chronic cough or red flag symptoms.

5. Differential Diagnosis

Systematic approach organized by probability and clinical features

Acute Cough (Duration: Less Than 3 Weeks)

ProbabilityConditionKey FeaturesRed Flags
COMMON (approximately 80%)Viral upper respiratory tract infection (common cold)Nasal congestion, rhinorrhea, sore throat, low-grade fever; self-limited over 7-10 daysSymptoms persisting beyond 10 days without improvement
COMMONAcute bronchitisProductive cough following upper respiratory infection; may have mild wheeze; lasts 1-3 weeksHigh fever, severe dyspnea, focal chest findings
COMMONAcute exacerbation of asthmaKnown asthmatic with increased cough, wheeze, dyspnea; identifiable trigger often presentInability to speak in sentences, silent chest, cyanosis
COMMONAllergic rhinitis exacerbationSeasonal pattern, sneezing, itchy eyes and nose, clear rhinorrhea, known allergiesNone specific; consider if symptoms severe or not responding
LESS COMMON (approximately 15%)Community-acquired pneumoniaFever, productive cough (purulent or rust-colored sputum), dyspnea, pleuritic chest painHypoxia, tachypnea, hypotension, confusion (severe pneumonia)
LESS COMMONAcute bacterial sinusitisSymptoms beyond 10 days, facial pain/pressure, purulent nasal discharge, post-nasal dripPeriorbital swelling, severe headache, visual changes, high fever
LESS COMMONInfluenzaAbrupt onset, high fever, myalgias, headache, dry cough, prostration; seasonal patternDyspnea, chest pain, altered mental status (complications)
UNCOMMON BUT SERIOUS (approximately 5%)Pulmonary embolismSudden dyspnea, pleuritic chest pain, cough (may be dry or with hemoptysis), risk factors presentHemoptysis, syncope, hypotension, hypoxia disproportionate to findings
UNCOMMON BUT SERIOUSForeign body aspirationSudden onset after choking episode, unilateral wheeze, may have witnessed aspiration eventSevere dyspnea, stridor, cyanosis
UNCOMMON BUT SERIOUSAcute heart failure exacerbationDyspnea, orthopnea, paroxysmal nocturnal dyspnea, pink frothy sputum, known cardiac diseaseSevere dyspnea at rest, hypoxia, hypotension

Subacute Cough (Duration: 3 to 8 Weeks)

Clinical Approach to Subacute Cough:

  1. Step 1: Determine if this follows a respiratory infection — most subacute cough is post-infectious
  2. Step 2: Consider pertussis if paroxysmal cough, inspiratory whoop, or post-tussive vomiting
  3. Step 3: If no clear post-infectious etiology, evaluate as for chronic cough (especially “The Big Three”)
ProbabilityConditionApproximate FrequencyKey Distinguishing Features
COMMONPost-infectious cough40-50%Follows clear upper respiratory infection; gradually improving; normal chest examination and radiograph; resolves within 8 weeks
COMMONUpper airway cough syndrome developing20-30%Persistent post-nasal drip, throat clearing, nasal congestion following infection; may represent new diagnosis
LESS COMMONPertussis (whooping cough)10-20%Paroxysmal cough with inspiratory “whoop,” post-tussive vomiting, prolonged course (up to 100 days); may lack classic features in adults
LESS COMMONAsthma (new diagnosis or unrecognized)10-15%Cough triggered by infection persists; nocturnal symptoms, exercise intolerance, response to bronchodilators
LESS COMMONBacterial sinusitis5-10%Prolonged symptoms beyond 10 days, facial pain, purulent discharge, “double worsening” pattern
UNCOMMONMycoplasma or Chlamydophila pneumonia5%Atypical pneumonia with prolonged dry cough, low-grade fever, may have extrapulmonary manifestations

Chronic Cough (Duration: Greater Than 8 Weeks)

Step-by-Step Approach to Chronic Cough:

  1. Step 1: Rule out obvious causes — Is the patient taking an angiotensin-converting enzyme inhibitor? Is the patient a current smoker? Is the chest radiograph abnormal?
  2. Step 2: If chest radiograph normal and not on angiotensin-converting enzyme inhibitor and non-smoker, consider “The Big Three” — upper airway cough syndrome, asthma, gastroesophageal reflux disease (account for more than 90% of cases)
  3. Step 3: If initial workup negative, investigate for less common causes: non-asthmatic eosinophilic bronchitis, obstructive sleep apnea, bronchiectasis
  4. Step 4: Remember that multiple etiologies coexist in up to 25% of patients
ProbabilityConditionApproximate FrequencyKey Distinguishing Features
COMMONUpper airway cough syndrome (post-nasal drip syndrome)20-40%Sensation of secretions dripping, frequent throat clearing, nasal congestion, cobblestone pharynx; responds to antihistamines and nasal steroids
COMMONAsthma (including cough-variant asthma)20-30%Episodic symptoms, triggers (cold air, exercise, allergens), nocturnal cough, personal or family history of atopy; responds to inhaled corticosteroids
COMMONGastroesophageal reflux disease10-40%May or may not have heartburn (up to 75% have “silent reflux”); worse after meals, when supine; requires prolonged proton pump inhibitor trial
LESS COMMONAngiotensin-converting enzyme inhibitor-induced cough5-20% of ACE inhibitor usersDry, tickling cough; onset weeks to months after starting medication; resolves 1-4 weeks after discontinuation
LESS COMMONNon-asthmatic eosinophilic bronchitis10-15%Chronic cough with sputum eosinophilia but normal spirometry and no bronchial hyperreactivity; responds to inhaled corticosteroids
LESS COMMONChronic bronchitis5-10%Productive cough most days for at least 3 months in 2 consecutive years; smoking history; chronic obstructive pulmonary disease features
LESS COMMONBronchiectasis4-5%Daily productive cough with large volume purulent sputum, recurrent infections; CT chest diagnostic
UNCOMMON BUT SERIOUSLung cancer2%Smoker over 40, change in chronic cough character, hemoptysis, weight loss, hoarseness; chest imaging abnormal
UNCOMMON BUT SERIOUSTuberculosisLess than 1% (higher in endemic areas)Chronic cough, night sweats, weight loss, hemoptysis; risk factors (immigration, HIV, exposure)
UNCOMMONInterstitial lung diseaseLess than 1%Progressive dyspnea with dry cough; fine “Velcro” crackles; clubbing; restrictive pattern on spirometry
UNCOMMONChronic heart failureVariableNocturnal cough, orthopnea, paroxysmal nocturnal dyspnea, peripheral edema, cardiac history
UNCOMMONObstructive sleep apneaVariableNocturnal cough, snoring, witnessed apneas, daytime somnolence, obesity; often coexists with gastroesophageal reflux disease

Anatomical Approach to Cough

Upper Airway

Upper airway cough syndrome

Allergic rhinitis

Chronic sinusitis

Laryngitis

Laryngeal hypersensitivity

Obstructive sleep apnea

Central Airways

Asthma

Chronic bronchitis

Bronchiectasis

Foreign body

Endobronchial tumor

Tracheomalacia

Lung Parenchyma

Pneumonia

Interstitial lung disease

Lung cancer

Tuberculosis

Sarcoidosis

Pulmonary fibrosis

Extra-Pulmonary

Gastroesophageal reflux disease

Heart failure

Pericardial disease

Angiotensin-converting enzyme inhibitor use

Ear wax (Arnold’s nerve)

Psychogenic cough

Drug-Induced Cough

Drug or Drug ClassMechanismCharacteristicsTime to Resolution After Stopping
Angiotensin-converting enzyme inhibitors (lisinopril, enalapril, ramipril, etc.)Inhibition of bradykinin breakdown leads to accumulation in airways, sensitizing C-fiber receptorsDry, tickling, persistent cough; may occur weeks to months after initiation; affects 5-20% of users; more common in women and non-smokers1 to 4 weeks (may take up to 3 months in some cases)
Beta-blockers (non-selective: propranolol, nadolol)Bronchospasm from beta-2 receptor blockade in susceptible individualsCough with wheeze; more likely in patients with asthma or chronic obstructive pulmonary disease; cardioselective agents saferDays to 1-2 weeks
Inhaled corticosteroidsLocal irritation of upper airway; fungal laryngitis (candidiasis)Throat irritation, dysphonia, cough after inhalation; improved with spacer use and mouth rinsingDays (with technique improvement)
NitrofurantoinAcute hypersensitivity reaction or chronic pulmonary fibrosisAcute: fever, cough, dyspnea within days to weeks; Chronic: insidious dyspnea and cough over months to yearsAcute: days to weeks; Chronic: may be irreversible
MethotrexateHypersensitivity pneumonitisDry cough, dyspnea, fever; can occur at any time during treatment; potentially life-threateningWeeks to months; may require corticosteroids
AmiodaroneDirect pulmonary toxicity; phospholipidosisDry cough, progressive dyspnea; occurs in up to 10% of users; dose and duration dependentMonths; often requires corticosteroids; may be irreversible
Sirolimus and everolimusDrug-induced pneumonitisCough, dyspnea, interstitial infiltrates on imagingWeeks to months after discontinuation
Checkpoint inhibitors (pembrolizumab, nivolumab, etc.)Immune-related pneumonitisCough, dyspnea; can occur weeks to months after starting therapy; potentially severeVariable; often requires corticosteroids
Inhaled medications in generalBronchospasm, airway irritationCough immediately after or shortly after inhalationImmediate (with proper technique or alternative formulation)

Quick Reference: “If You See This, Think This”

Clinical ClueThink This FirstNext Step
Chronic cough + taking angiotensin-converting enzyme inhibitorAngiotensin-converting enzyme inhibitor-induced coughStop angiotensin-converting enzyme inhibitor, switch to angiotensin receptor blocker; reassess in 1-4 weeks
Throat clearing + post-nasal drip sensationUpper airway cough syndromeTrial of first-generation antihistamine plus decongestant; consider nasal corticosteroids
Nocturnal cough + episodic wheezeAsthmaSpirometry with bronchodilator response; if normal, consider methacholine challenge
Cough worse after meals or when supineGastroesophageal reflux diseaseEmpiric proton pump inhibitor trial (twice daily for 2-3 months)
Smoker over 40 with new or changed coughLung cancer until proven otherwiseChest CT; urgent referral if abnormal
Hemoptysis + weight loss + night sweatsTuberculosis or malignancyChest radiograph, sputum studies, CT chest; isolation if tuberculosis suspected
Paroxysmal cough + inspiratory whoop + post-tussive vomitingPertussisPertussis PCR or culture; treat with macrolide; notify public health
Daily large volume purulent sputumBronchiectasisHigh-resolution CT chest
Progressive dyspnea + dry cough + fine cracklesInterstitial lung diseaseHigh-resolution CT chest; pulmonary function tests; consider referral
Orthopnea + paroxysmal nocturnal dyspnea + peripheral edemaHeart failureBrain natriuretic peptide, echocardiogram, chest radiograph
Cough triggered by ear examinationArnold’s nerve reflex (ear pathology)Examine ears for cerumen impaction, hair on tympanic membrane, foreign body

6. Diagnostic Investigations

A stepwise, cost-effective approach guided by clinical suspicion

Baseline Investigations for All Patients with Chronic Cough

InvestigationPurposeWhat to Look ForPractical Points
Chest radiograph (posteroanterior and lateral)Exclude parenchymal disease, masses, effusions, cardiomegalyMass lesions, infiltrates, interstitial markings, cardiomegaly, pleural effusion, hilar lymphadenopathyNormal in most common causes of chronic cough (upper airway cough syndrome, asthma, gastroesophageal reflux disease); abnormal radiograph requires further investigation
Spirometry with bronchodilator responseDetect airflow obstruction; assess reversibilityFEV1/FVC ratio less than 0.7 indicates obstruction; greater than 12% and 200 mL improvement post-bronchodilator suggests asthmaNormal spirometry does not exclude asthma (may be normal between attacks); proceed to bronchoprovocation if clinical suspicion high

Initial Approach in Primary Care

For chronic cough with normal chest radiograph in a non-smoker not taking an angiotensin-converting enzyme inhibitor, begin with empiric treatment for “The Big Three” based on clinical suspicion before pursuing extensive testing. Many patients respond to empiric therapy, avoiding unnecessary investigations.

Targeted Investigations by Suspected Etiology

If Suspecting Upper Airway Cough Syndrome

First-Line Tests

  • Clinical diagnosis and empiric treatment trial: First-generation antihistamine (chlorpheniramine, diphenhydramine) plus decongestant for 2-4 weeks is diagnostic and therapeutic
  • Nasal examination: Assess for mucosal edema, polyps, purulent discharge

Second-Line Tests

  • Sinus CT scan: If symptoms suggest chronic sinusitis or empiric therapy fails; shows mucosal thickening, air-fluid levels, polyps
  • Allergy testing: Skin prick tests or specific IgE if allergic rhinitis suspected; guides allergen avoidance
  • Nasal endoscopy: Performed by ENT specialist to visualize posterior nasal cavity and nasopharynx

If Suspecting Asthma

First-Line Tests

  • Spirometry with bronchodilator response: FEV1/FVC less than 0.7 with greater than 12% and greater than 200 mL improvement confirms reversible obstruction
  • Peak expiratory flow variability: Greater than 20% diurnal variation over 2 weeks supports diagnosis

Second-Line Tests

  • Methacholine challenge test: PC20 (concentration causing 20% fall in FEV1) less than 4 mg/mL is positive; highly sensitive—negative test essentially excludes asthma
  • Fractional exhaled nitric oxide (FeNO): Greater than 50 parts per billion in adults suggests eosinophilic airway inflammation; supports asthma diagnosis
  • Sputum eosinophil count: Greater than 3% supports eosinophilic airway disease (asthma or non-asthmatic eosinophilic bronchitis)

If Suspecting Gastroesophageal Reflux Disease

First-Line Tests

  • Empiric proton pump inhibitor trial: High-dose twice daily (e.g., omeprazole 40 mg twice daily) for minimum 8 weeks; response supports diagnosis but may take 2-3 months for cough to improve
  • Note: Up to 75% of patients with reflux-related cough have no typical symptoms (heartburn, regurgitation)

Second-Line Tests

  • 24-hour esophageal pH monitoring (with impedance): Gold standard; correlates reflux episodes with cough events; useful if proton pump inhibitor trial inconclusive
  • Upper gastrointestinal endoscopy: Identifies esophagitis, Barrett’s esophagus; normal in many patients with reflux cough
  • High-resolution esophageal manometry: Assesses esophageal motility; useful if considering fundoplication

If Suspecting Non-Asthmatic Eosinophilic Bronchitis

Diagnostic Criteria

  • Sputum eosinophilia: Greater than 3% eosinophils on induced sputum
  • Normal spirometry: No airflow obstruction
  • Negative bronchoprovocation: Normal methacholine challenge (PC20 greater than 16 mg/mL)

Supporting Tests

  • Fractional exhaled nitric oxide: Often elevated (greater than 50 parts per billion)
  • Response to inhaled corticosteroids: Confirms diagnosis therapeutically

If Suspecting Bronchiectasis

Diagnostic Tests

  • High-resolution CT chest: Diagnostic gold standard; shows bronchial dilatation (signet ring sign), bronchial wall thickening, lack of tapering
  • Sputum culture: Identify colonizing organisms (Pseudomonas aeruginosa, Haemophilus influenzae)

Etiological Workup

  • Immunoglobulin levels: IgG, IgA, IgM (immunodeficiency)
  • Aspergillus serology and IgE: Allergic bronchopulmonary aspergillosis
  • Autoantibodies: If connective tissue disease suspected
  • Cystic fibrosis testing: Sweat chloride, genetic testing if appropriate

If Suspecting Lung Cancer

Imaging

  • CT chest with contrast: Characterize lesion, assess mediastinal lymph nodes, staging
  • PET-CT: For staging if malignancy confirmed or highly suspected

Tissue Diagnosis

  • Bronchoscopy with biopsy: For central lesions
  • CT-guided biopsy: For peripheral lesions
  • Sputum cytology: Low sensitivity but non-invasive

Empiric Treatment Trials as Diagnostic Tools

Sequential Empiric Therapy Approach

When the diagnosis is unclear and baseline investigations are normal, empiric treatment trials can serve as diagnostic tools. Response to therapy supports the diagnosis. This approach is particularly useful in primary care for “The Big Three” causes of chronic cough.

  1. Trial 1 — Upper airway cough syndrome: First-generation antihistamine (e.g., chlorpheniramine 4 mg three times daily) plus decongestant for 2-4 weeks; response expected within 2 weeks if upper airway cough syndrome is the cause
  2. Trial 2 — Asthma: Inhaled corticosteroid (e.g., fluticasone 250 mcg twice daily) with or without bronchodilator for 4-8 weeks; cough-variant asthma may take 6-8 weeks to respond
  3. Trial 3 — Gastroesophageal reflux disease: Proton pump inhibitor twice daily (e.g., omeprazole 40 mg twice daily) for minimum 8 weeks; reflux-related cough may take 2-3 months for significant improvement

Important: If one etiology is treated without improvement, add therapy for the next suspected cause rather than stopping the first treatment—multiple etiologies often coexist.

Investigation Algorithm Summary

StepActionIf AbnormalIf Normal
1History and physical examination; identify red flags and obvious causesInvestigate and treat specific causeProceed to step 2
2Stop angiotensin-converting enzyme inhibitor if presentIf cough resolves in 1-4 weeks, diagnosis confirmedProceed to step 3
3Chest radiographInvestigate abnormality (CT, bronchoscopy, etc.)Proceed to step 4
4Spirometry with bronchodilator responseIf obstructive with reversibility, treat as asthmaProceed to step 5
5Empiric treatment for “The Big Three” based on clinical featuresResponse confirms diagnosis; continue treatmentProceed to step 6
6Advanced testing: methacholine challenge, FeNO, sputum eosinophils, 24-hour pH monitoring, CT chestTreat identified causeConsider specialist referral

Additional Investigations for Specific Scenarios

Clinical ScenarioInvestigationWhat It Shows
Suspected pertussisNasopharyngeal swab for Bordetella pertussis PCR; pertussis serology (IgG, IgA)PCR positive early in illness; serology useful later; lymphocytosis on complete blood count is suggestive
Suspected tuberculosisSputum smear and culture for acid-fast bacilli (3 samples); tuberculin skin test or interferon-gamma release assay; chest radiographSmear shows acid-fast bacilli; culture confirms and allows sensitivity testing; upper lobe infiltrates, cavitation on imaging
Suspected heart failureBrain natriuretic peptide (BNP or NT-proBNP); echocardiogram; chest radiographBNP greater than 100 pg/mL suggests heart failure; echocardiogram shows reduced ejection fraction or diastolic dysfunction; cardiomegaly and pulmonary congestion on radiograph
Suspected interstitial lung diseaseHigh-resolution CT chest; pulmonary function tests (including diffusing capacity); autoimmune panel if connective tissue disease suspectedReticular pattern, honeycombing, traction bronchiectasis on CT; restrictive pattern with reduced diffusing capacity on pulmonary function tests
Suspected pulmonary embolismD-dimer; CT pulmonary angiography; lower extremity Doppler ultrasoundElevated D-dimer (sensitive but not specific); filling defects on CT pulmonary angiography; deep vein thrombosis on ultrasound
Chronic refractory coughLaryngoscopy; 24-hour pH-impedance monitoring; cough reflex sensitivity testingLaryngoscopy may show vocal cord dysfunction, laryngopharyngeal reflux changes; pH-impedance correlates symptoms with reflux events

Practical Pearl: Cost-Effective Approach

In most patients with chronic cough, a normal chest radiograph, and no red flags, a systematic empiric treatment approach guided by clinical features is more cost-effective than extensive upfront testing. Reserve advanced investigations (methacholine challenge, pH monitoring, CT chest) for patients who fail to respond to empiric therapy.

7. Pattern Recognition and Clinical Decision-Making

Practical algorithms and decision pathways

Step 1: Is This Urgent?

Clinical ScenarioUrgency LevelImmediate Action
Massive hemoptysis (greater than 200 mL in 24 hours)EMERGENTStabilize airway, position bleeding lung dependent, urgent bronchoscopy or interventional radiology; consider ICU admission
Severe respiratory distress, hypoxia (SpO2 less than 90%), cyanosisEMERGENTSupplemental oxygen, urgent chest radiograph, consider pneumonia, pulmonary embolism, severe asthma exacerbation, heart failure
Stridor or signs of upper airway obstructionEMERGENTKeep patient calm, prepare for airway management, urgent ENT or anesthesia consultation; consider foreign body, angioedema, epiglottitis
Suspected pulmonary embolism (dyspnea, pleuritic pain, risk factors)EMERGENTCalculate Wells score, D-dimer if low probability, CT pulmonary angiography if indicated; anticoagulation if confirmed
Hemoptysis (any amount) in smoker over 40URGENTChest radiograph same day; CT chest within 2 weeks; urgent pulmonology referral if mass suspected
Suspected pneumonia with comorbidities or severe featuresURGENTCalculate CURB-65 or PSI score; chest radiograph; blood cultures if admission indicated; initiate antibiotics promptly
Weight loss, night sweats, or tuberculosis risk factorsURGENTChest radiograph, sputum for acid-fast bacilli (3 samples), isolation precautions if tuberculosis suspected
Chronic cough without red flags, normal chest radiographROUTINESystematic evaluation and empiric treatment for “The Big Three”; follow-up in 2-4 weeks
Acute cough with typical viral upper respiratory infection featuresROUTINESymptomatic treatment, reassurance, safety netting; return if worsening or not improving in 10 days

Step 2: Classify by Duration

Acute (less than 3 weeks)

Proceed to Algorithm A

Focus: Rule out pneumonia, pulmonary embolism, heart failure; most cases are viral and self-limited

Subacute (3 to 8 weeks)

Proceed to Algorithm B

Focus: Post-infectious cough most common; consider pertussis; evaluate as chronic if not improving

Chronic (greater than 8 weeks)

Proceed to Algorithm C

Focus: Systematic approach to “The Big Three”; stop angiotensin-converting enzyme inhibitor; chest radiograph for all

Step 3: Follow the Appropriate Algorithm

Algorithm A: Acute Cough (Less Than 3 Weeks)

Clinical ScenarioMost Likely DiagnosisAction
Cough with nasal congestion, rhinorrhea, sore throat, low-grade fever, no dyspneaViral upper respiratory tract infectionSymptomatic treatment (analgesics, decongestants, honey for cough); reassurance; no antibiotics needed
Productive cough following upper respiratory infection, no fever, no focal findingsAcute bronchitisSymptomatic treatment; antibiotics NOT indicated; may last 2-3 weeks; consider inhaler if significant wheeze
High fever, productive cough, dyspnea, focal chest findings (crackles, bronchial breathing)Community-acquired pneumoniaChest radiograph to confirm; calculate severity score (CURB-65); antibiotics per local guidelines; consider admission if score greater than or equal to 2
Known asthmatic with cough, wheeze, dyspnea, identifiable triggerAsthma exacerbationBronchodilator, assess severity, short course oral corticosteroids if moderate-severe; review maintenance therapy
Sudden onset dyspnea, pleuritic chest pain, risk factors (recent surgery, immobility, malignancy)Pulmonary embolismCalculate Wells score; D-dimer if low probability; CT pulmonary angiography if intermediate-high probability; anticoagulation if confirmed
Sudden onset cough after choking episode, unilateral wheezeForeign body aspirationChest radiograph (inspiratory and expiratory views); rigid bronchoscopy for removal if confirmed

Algorithm B: Subacute Cough (3 to 8 Weeks)

Clinical ScenarioMost Likely DiagnosisAction
Cough following clear upper respiratory infection, gradually improving, no other symptomsPost-infectious coughReassurance that resolution expected within 8 weeks; consider inhaled ipratropium or corticosteroid if troublesome
Paroxysmal cough with inspiratory “whoop,” post-tussive vomiting, known exposurePertussisNasopharyngeal swab for pertussis PCR; macrolide antibiotic (azithromycin 5 days); notify public health; household prophylaxis
Persistent nasal symptoms, facial pressure, purulent discharge beyond 10 daysBacterial sinusitisAntibiotics (amoxicillin-clavulanate first line) for 5-10 days; nasal saline, decongestants; CT sinus if recurrent
Cough not improving, features suggesting “The Big Three”Undiagnosed chronic cough etiologyEvaluate as chronic cough (Algorithm C); do not wait until 8 weeks if pattern suggests chronic etiology

Algorithm C: Chronic Cough (Greater Than 8 Weeks)

StepClinical ScenarioAction
C1Patient taking angiotensin-converting enzyme inhibitorStop angiotensin-converting enzyme inhibitor; switch to angiotensin receptor blocker; reassess in 1-4 weeks (may take up to 3 months)
C2Current smokerCounsel on smoking cessation; chest radiograph; if persists after 4 weeks of cessation, evaluate further
C3Chest radiograph abnormalInvestigate based on findings (CT chest, bronchoscopy, etc.); refer to specialist if mass, infiltrate, or unexplained abnormality
C4Symptoms suggest upper airway cough syndrome (throat clearing, post-nasal drip, nasal congestion)Empiric trial: first-generation antihistamine plus decongestant for 2-4 weeks; add nasal corticosteroid if allergic features
C5Symptoms suggest asthma (episodic, triggers, nocturnal, wheeze)Spirometry; if normal but suspicion high, methacholine challenge; empiric trial of inhaled corticosteroid for 6-8 weeks
C6Symptoms suggest gastroesophageal reflux disease (worse after meals, supine, heartburn) OR no clear etiologyEmpiric proton pump inhibitor twice daily for minimum 8 weeks (may take 2-3 months for cough improvement)
C7Failed empiric therapy for all three conditionsConsider non-asthmatic eosinophilic bronchitis (sputum eosinophils, FeNO); 24-hour pH-impedance monitoring; high-resolution CT; specialist referral

“What Do I Do If…” Decision Reference

Clinical SituationImmediate ActionNext Step
Patient on angiotensin-converting enzyme inhibitor with chronic coughStop angiotensin-converting enzyme inhibitor today; switch to angiotensin receptor blocker for blood pressure controlReassess in 1-4 weeks; if cough resolves, diagnosis confirmed; if persists beyond 4 weeks, evaluate for other causes
Chronic cough patient has tried antihistamines, inhalers, and proton pump inhibitors without improvementVerify adequate duration and dosing of each treatment; ensure complianceConsider: multiple coexisting causes, non-asthmatic eosinophilic bronchitis (check sputum eosinophils), 24-hour pH monitoring, specialist referral
Smoker over 40 with new cough or change in chronic coughChest radiograph urgently; counsel smoking cessationIf chest radiograph abnormal: CT chest and pulmonology referral. If normal: CT chest still recommended given lung cancer risk; continue standard evaluation
Patient with cough and hemoptysisQuantify hemoptysis; chest radiograph; assess hemodynamic stabilityMassive hemoptysis: emergency management. Non-massive: CT chest, bronchoscopy; consider tuberculosis, malignancy, bronchiectasis, pulmonary embolism
Chronic cough with completely normal workup including specialist evaluationConsider cough hypersensitivity syndrome, unexplained chronic cough, or psychogenic coughTrial of neuromodulators (gabapentin, pregabalin); speech therapy for laryngeal hypersensitivity; cough suppression techniques
Suspected pertussis in adultNasopharyngeal swab for pertussis PCR; start macrolide empirically if high suspicionNotify public health; household contacts need prophylaxis; advise patient cough may persist for weeks despite treatment
Cough triggered during ear examinationExamine for cerumen impaction, foreign body, hair touching tympanic membraneRemove cerumen or foreign body; if cough resolves, Arnold’s nerve reflex confirmed
Patient requesting antibiotics for acute cough with viral featuresExplain viral etiology and self-limited nature; discuss antibiotic resistance and side effectsOffer symptomatic treatments (honey, analgesics, decongestants); provide safety netting advice; delayed prescription only if clear indication

Troubleshooting Refractory Chronic Cough

Ask These Questions When Cough Persists Despite Treatment

  • Was the treatment duration adequate? Gastroesophageal reflux disease requires 2-3 months of proton pump inhibitor; cough-variant asthma may take 6-8 weeks to respond to inhaled corticosteroids
  • Was patient compliance good? Verify patient is taking medications correctly and consistently (inhaler technique, timing of doses)
  • Were all potential causes addressed? Up to 25% of patients have multiple coexisting etiologies—treat all suspected causes simultaneously rather than sequentially
  • Is the diagnosis correct? Reconsider if patient not responding; arrange advanced testing (methacholine challenge, 24-hour pH-impedance, high-resolution CT)
  • Are there multiple overlapping causes? If partial response to one treatment, add treatment for another etiology rather than stopping first treatment
  • Has non-asthmatic eosinophilic bronchitis been excluded? Check sputum eosinophils or FeNO; responds to inhaled corticosteroids
  • Could this be unexplained chronic cough or cough hypersensitivity syndrome? Consider if all evaluations negative; may benefit from neuromodulators or speech therapy

8. Clinical Pearls and Pitfalls

Practical wisdom — learn from successes and avoid common mistakes

Must-Know Clinical Pearls

“The Big Three” dominate chronic cough: Upper airway cough syndrome, asthma, and gastroesophageal reflux disease account for more than 90% of chronic cough in non-smokers with a normal chest radiograph. Always consider these first.
Multiple etiologies often coexist: Up to 25% of patients with chronic cough have more than one cause. If partial response to treatment for one condition, add therapy for another suspected etiology rather than abandoning the first treatment.
Silent reflux is common: Up to 75% of patients with gastroesophageal reflux disease-related cough do not have typical symptoms of heartburn or regurgitation. The absence of heartburn does not exclude reflux as a cause of cough.
Angiotensin-converting enzyme inhibitor cough takes time to resolve: After stopping the medication, cough may persist for 1-4 weeks (occasionally up to 3 months). Do not conclude it was not the cause after only a few days.
Check the ears: Arnold’s nerve reflex (ear-cough reflex) is frequently forgotten. Cerumen impaction or hair touching the tympanic membrane can cause chronic cough in 2-4% of patients. Always examine the ears in unexplained chronic cough.
Normal spirometry does not exclude asthma: Cough-variant asthma may have completely normal spirometry between episodes. If clinical suspicion is high, proceed to methacholine challenge testing or empiric inhaled corticosteroid trial.
First-generation antihistamines work better for upper airway cough syndrome: The anticholinergic properties of first-generation antihistamines (chlorpheniramine, diphenhydramine) help dry secretions. Second-generation antihistamines (loratadine, cetirizine) are less effective for cough.
Proton pump inhibitor treatment requires patience: Gastroesophageal reflux disease-related cough may take 2-3 months of twice-daily proton pump inhibitor therapy to improve significantly. Short treatment courses often fail.

Critical Pitfalls to Avoid

Prescribing antibiotics for acute bronchitis: Acute bronchitis is almost always viral. Antibiotics do not shorten duration or severity and contribute to antibiotic resistance. Yellow or green sputum does not indicate bacterial infection.
Stopping angiotensin-converting enzyme inhibitor evaluation too early: Cough may take 1-4 weeks (sometimes up to 3 months) to resolve after discontinuation. Wait at least 4 weeks before concluding it was not the cause.
Failing to obtain chest radiograph in chronic cough: All patients with chronic cough should have a chest radiograph. Missing lung cancer, tuberculosis, or interstitial lung disease can have devastating consequences.
Treating “The Big Three” sequentially rather than based on clinical features: Evaluate clinical features and treat the most likely diagnosis first; if multiple etiologies suspected, treat simultaneously. Do not rigidly follow a sequential protocol.
Ignoring red flags: Hemoptysis, weight loss, night sweats, hoarseness greater than 3 weeks, and new cough in a smoker over 40 require prompt investigation regardless of other symptoms.
Dismissing chronic cough as trivial: Chronic cough significantly impacts quality of life, causing sleep disturbance, urinary incontinence, social embarrassment, and depression. It deserves thorough evaluation and treatment.
Assuming normal physical examination excludes serious pathology: Many common causes of chronic cough (upper airway cough syndrome, gastroesophageal reflux disease, cough-variant asthma, angiotensin-converting enzyme inhibitor cough) have completely normal chest examinations.
Using cough suppressants without addressing underlying cause: Symptomatic treatment alone delays diagnosis and definitive treatment. Always search for and treat the underlying etiology.

Key Takeaways

  • Duration guides approach: Classify cough as acute (less than 3 weeks), subacute (3-8 weeks), or chronic (greater than 8 weeks), as the differential diagnosis and management differ significantly for each category.
  • Acute cough is usually viral: Most acute cough is caused by viral upper respiratory tract infection and is self-limited. Reserve antibiotics for confirmed bacterial pneumonia or specific indications.
  • Subacute cough is often post-infectious: Following an upper respiratory infection, cough may persist for 3-8 weeks due to airway inflammation and receptor hypersensitivity. Consider pertussis if paroxysmal with post-tussive vomiting.
  • Chronic cough requires systematic evaluation: Obtain chest radiograph for all; stop angiotensin-converting enzyme inhibitor if present; evaluate for “The Big Three” (upper airway cough syndrome, asthma, gastroesophageal reflux disease).
  • Empiric treatment is often diagnostic: Response to empiric therapy for upper airway cough syndrome, asthma, or gastroesophageal reflux disease confirms the diagnosis and avoids extensive testing in most patients.
  • Treatment duration matters: Allow adequate time for treatments to work—2-4 weeks for antihistamines, 6-8 weeks for inhaled corticosteroids, and 2-3 months for proton pump inhibitors.
  • Multiple causes are common: Up to 25% of patients have more than one etiology. If partial response, add treatment for another suspected cause rather than abandoning the first.
  • Red flags demand urgent action: Hemoptysis, unexplained weight loss, night sweats, persistent hoarseness, and new cough in smoker over 40 require prompt investigation to exclude malignancy and tuberculosis.
  • Normal examination does not reassure: Many causes of chronic cough have entirely normal physical examination findings. Investigation and treatment should proceed based on clinical suspicion.
  • Consider uncommon causes in refractory cases: Non-asthmatic eosinophilic bronchitis, obstructive sleep apnea, and Arnold’s nerve reflex are frequently missed. Cough hypersensitivity syndrome may explain truly refractory cases.

Quick Reference Algorithm

Systematic Approach to Chronic Cough:

  1. Identify and address red flags — hemoptysis, weight loss, night sweats, hoarseness, smoker with new cough require urgent investigation
  2. Stop angiotensin-converting enzyme inhibitor — if patient is taking one, switch to angiotensin receptor blocker and reassess in 1-4 weeks
  3. Obtain chest radiograph — abnormal findings direct further investigation; normal radiograph suggests “The Big Three”
  4. Evaluate for “The Big Three” — upper airway cough syndrome, asthma, gastroesophageal reflux disease based on clinical features
  5. Initiate empiric treatment — first-generation antihistamine plus decongestant for upper airway cough syndrome; inhaled corticosteroid for asthma; twice-daily proton pump inhibitor for gastroesophageal reflux disease
  6. Allow adequate treatment duration — 2-4 weeks for upper airway cough syndrome, 6-8 weeks for asthma, 8-12 weeks for gastroesophageal reflux disease
  7. If partial or no response, add or substitute — treat for additional suspected causes; consider advanced testing (methacholine challenge, pH monitoring, high-resolution CT)
  8. Refer to specialist — if cough persists despite adequate empiric treatment for all common causes, or if red flags present