Kwashiorkor: Causes, Symptoms, Diagnosis, Treatment and Prevention
Kwashiorkor is a severe form of acute malnutrition characterised by bilateral pitting oedema, variable degrees of wasting, hypoalbuminaemia, dermatosis, hair depigmentation, hepatomegaly and impaired immune function. It predominantly affects infants and young children exposed to inadequate nutrient intake, recurrent infections, food insecurity and inappropriate complementary feeding.
Although kwashiorkor was historically attributed to isolated protein deficiency, current understanding recognises it as a multifactorial metabolic disorder involving deficiency of energy, essential amino acids, fatty acids and micronutrients, together with systemic inflammation, oxidative stress, intestinal barrier dysfunction, altered gut microbiota and impaired hepatic metabolism.
The presence of oedema may mask severe depletion of skeletal muscle and adipose tissue. Therefore, an affected child may have apparently preserved body weight despite profound malnutrition.
What Is Kwashiorkor?
Kwashiorkor is an oedematous form of severe acute malnutrition in which bilateral pitting oedema is the defining clinical feature. Oedema usually begins over the dorsum of both feet and may progressively involve the ankles, legs, hands, face and abdominal wall.
In children aged 6β59 months, severe acute malnutrition is identified by one or more of the following:
- Bilateral pitting oedema of nutritional origin
- Mid-upper arm circumference below 115 mm
- Weight-for-height or weight-for-length below β3 standard deviations of the reference median
Anthropometric measurements must be interpreted carefully because fluid retention increases body weight and may conceal the degree of wasting.
Kwashiorkor, Marasmus and Marasmic Kwashiorkor
| Condition | Characteristic Features |
| Kwashiorkor | Bilateral pitting oedema, dermatosis, hair changes, hepatomegaly and variable wasting |
| Marasmus | Severe loss of skeletal muscle and subcutaneous fat without oedema |
| Marasmic kwashiorkor | Severe wasting associated with bilateral nutritional oedema |
Aetiology and Risk Factors
Kwashiorkor develops through the interaction of nutritional deficiency, infection, metabolic adaptation and adverse socioeconomic conditions.
Inadequate Nutrient Intake
Affected children frequently receive diets deficient in:
- Energy
- High-biological-value protein
- Essential amino acids
- Essential fatty acids
- Zinc
- Selenium
- Magnesium
- Vitamins A, C, E and B-complex
The condition may develop after abrupt cessation of breastfeeding and substitution with diluted, cereal-based or predominantly carbohydrate-rich complementary foods with low nutrient density.
Inappropriate Complementary Feeding
Risk factors include:
- Early or abrupt weaning
- Delayed introduction of complementary foods
- Inadequate feeding frequency
- Excessive dilution of feeds
- Poor dietary diversity
- Low intake of animal-source or legume-based protein
Recurrent and Chronic Infection
Infections increase metabolic demand, suppress appetite, accelerate protein catabolism and impair intestinal absorption.
Common associated conditions include:
- Acute or persistent diarrhoea
- Pneumonia
- Measles
- Malaria
- Tuberculosis
- HIV infection
- Helminthic infestation
- Sepsis
Malnutrition and infection form a bidirectional cycle, as impaired immune function increases susceptibility to further infection.
Food Insecurity and Socioeconomic Factors
Kwashiorkor is more prevalent in populations affected by:
- Poverty
- Conflict and displacement
- Drought or crop failure
- Poor sanitation
- Unsafe drinking water
- Limited access to healthcare
- Household food insecurity
Chronic Medical Disorders
Secondary severe malnutrition may occur in association with:
- Coeliac disease
- Cystic fibrosis
- Chronic diarrhoeal disorders
- Inflammatory bowel disease
- Congenital heart disease
- Chronic kidney or liver disease
- Malignancy
- Neurological disorders affecting swallowing or feeding
- Chronic HIV infection
Pathophysiology of Kwashiorkor
The pathogenesis of kwashiorkor is complex and remains incompletely understood.
Hypoproteinaemia and Reduced Plasma Oncotic Pressure
Inadequate amino-acid availability and impaired hepatic protein synthesis reduce serum albumin and other circulating proteins.
Hypoalbuminaemia lowers plasma colloid oncotic pressure, facilitating movement of fluid from the intravascular compartment into the interstitial space. However, hypoalbuminaemia alone does not fully explain the development of nutritional oedema.
Increased Capillary Permeability
Systemic inflammation and oxidative endothelial injury may increase vascular permeability, allowing plasma water and proteins to move into the interstitial tissues.
Oxidative Stress
Deficiency of antioxidant nutrients and glutathione precursors reduces cellular protection against reactive oxygen species.
Oxidative injury may affect:
- Hepatocytes
- Vascular endothelium
- Cellular membranes
- Intestinal mucosa
- Mitochondria
This contributes to oedema, hepatic dysfunction, dermatosis and impaired immunity.
Intestinal Barrier Dysfunction
Severe malnutrition may produce:
- Villous atrophy
- Reduced brush-border enzyme activity
- Increased intestinal permeability
- Malabsorption
- Bacterial translocation
- Dysbiosis of the intestinal microbiome
These changes worsen nutrient deficiency and promote systemic inflammation.
Hepatic Steatosis
Fatty infiltration of the liver is a characteristic finding. Proposed mechanisms include:
- Reduced apolipoprotein synthesis
- Impaired very-low-density lipoprotein formation
- Defective triglyceride export
- Abnormal fatty-acid oxidation
- Oxidative hepatocellular injury
The resulting triglyceride accumulation produces hepatomegaly.
Electrolyte and Fluid Abnormalities
Children with kwashiorkor commonly have:
- Reduced total-body potassium
- Magnesium deficiency
- Possible phosphate depletion
- Increased total-body sodium
- Impaired renal sodium excretion
These abnormalities predispose to arrhythmias, muscle weakness, ileus and fluid overload during treatment.
Immune Dysfunction
Malnutrition impairs both innate and adaptive immunity through:
- Thymic atrophy
- Reduced T-lymphocyte function
- Impaired complement activity
- Reduced phagocytic function
- Altered cytokine responses
- Loss of skin and mucosal barrier integrity
Consequently, severe infection may occur without fever, leukocytosis or local inflammatory signs.
Clinical Features
Bilateral Pitting Oedema
The defining feature is symmetrical pitting oedema beginning in both feet. It may progress to the legs, hands, forearms, face and trunk.
Growth Retardation and Wasting
Clinical findings may include:
- Failure to thrive
- Reduced linear growth
- Skeletal muscle wasting
- Loss of subcutaneous fat
- Reduced mid-upper arm circumference
Oedema may conceal the severity of tissue depletion.
Dermatological Manifestations
Typical skin changes include:
- Hyperpigmentation
- Hypopigmentation
- Dryness and scaling
- Fissuring
- Erosions
- Epidermal desquamation
- βFlaky-paintβ dermatosis
Lesions commonly involve pressure-bearing and friction-prone areas such as the buttocks, groin and thighs.
Hair Changes
Hair abnormalities may include:
- Hypopigmentation
- Sparse growth
- Brittleness
- Easy pluckability
- Loss of normal texture
Alternating bands of depigmented and normally pigmented hair may produce the characteristic flag sign.
Hepatomegaly
The liver may be enlarged because of diffuse hepatic steatosis.
Neurobehavioural Manifestations
Children may exhibit:
- Apathy
- Irritability
- Lethargy
- Reduced social interaction
- Psychomotor regression
- Poor appetite
Other Clinical Features
Additional findings may include:
- Diarrhoea
- Abdominal distension
- Anaemia
- Hypothermia
- Hypoglycaemia
- Oral candidiasis
- Recurrent infections
- Delayed wound healing
Diagnosis
Diagnosis is primarily clinical and is supported by anthropometric and biochemical evaluation.
Clinical Assessment
Important elements include:
- Dietary and breastfeeding history
- Weaning and complementary feeding practices
- Recent infection
- Vomiting or diarrhoea
- Developmental history
- Chronic medical illness
- Household food security
- HIV or tuberculosis exposure
Anthropometric Assessment
The following should be measured:
- Weight
- Length or height
- Mid-upper arm circumference
- Weight-for-height or weight-for-length Z-score
- Grade of bilateral pitting oedema
Physical Examination
Assessment should include:
- Mental status
- Temperature
- Blood glucose
- Respiratory effort
- Hydration status
- Degree of oedema
- Muscle wasting
- Skin and hair changes
- Hepatomegaly
- Severe pallor
- Signs of infection
- Evidence of cardiac failure
Differential Diagnosis
Other causes of bilateral oedema include:
- Nephrotic syndrome
- Acute glomerulonephritis
- Chronic liver disease
- Congestive cardiac failure
- Protein-losing enteropathy
- Severe anaemia
- Renal failure
- Thiamine deficiency
Urinalysis is essential when nephrotic syndrome or glomerular disease is suspected.
Treatment
Kwashiorkor requires protocol-based management because severely malnourished children have limited cardiac, hepatic and renal reserve.
Management of Hypoglycaemia
Immediate therapeutic feeding is required. Intravenous or oral glucose may be administered when the child is symptomatic or unable to feed.
Prevention of Hypothermia
Measures include:
- Warm clothing
- Skin-to-skin contact
- A thermally controlled environment
- Frequent feeding
- Treatment of infection
Cautious Rehydration
Assessment of dehydration is difficult in oedematous malnutrition. Oral or nasogastric rehydration is preferred where possible. Intravenous fluids are reserved for shock and require careful monitoring because excessive fluid administration can precipitate cardiac failure.
Correction of Electrolyte Deficiency
Potassium and magnesium supplementation are commonly required. Sodium intake should be restricted because total-body sodium is usually elevated.
Treatment of Infection
Children with complicated severe acute malnutrition frequently receive empirical broad-spectrum antimicrobial therapy because infection may be clinically occult.
Micronutrient Supplementation
Therapeutic feeding regimens provide vitamins and trace elements. Iron supplementation is generally deferred until the stabilisation phase is complete and appetite has returned.
Stabilisation Feeding
During the initial phase, F-75 therapeutic formula may be administered in small, frequent feeds. It is designed to meet basal metabolic requirements without excessive protein, sodium or energy loading.
Nutritional Rehabilitation
After clinical stabilisation and improvement in appetite, rehabilitation may involve:
- F-100 therapeutic formula
- Ready-to-use therapeutic food
- Continued breastfeeding
- Nutrient-dense complementary feeding
The aim is catch-up growth, restoration of lean body mass and correction of micronutrient deficiencies.
Prevention of Refeeding Syndrome
Rapid nutritional advancement may cause:
- Hypophosphataemia
- Hypokalaemia
- Hypomagnesaemia
- Fluid retention
- Cardiac arrhythmias
- Respiratory failure
Feeding must therefore be advanced gradually with close clinical and biochemical monitoring.
Complications
Kwashiorkor may be complicated by:
- Sepsis
- Hypoglycaemia
- Hypothermia
- Severe electrolyte disturbances
- Cardiac failure
- Severe anaemia
- Hepatic dysfunction
- Skin and soft-tissue infection
- Refeeding syndrome
- Developmental impairment
- Death
Poor prognostic indicators include altered consciousness, severe oedema, persistent anorexia, hypothermia, hypoglycaemia and severe infection.
Prevention
Maternal and Infant Nutrition
Prevention includes adequate maternal nutrition, antenatal care and support for appropriate breastfeeding.
Complementary Feeding
From approximately six months of age, complementary foods should be:
- Energy dense
- Protein rich
- Micronutrient adequate
- Hygienically prepared
- Developmentally appropriate
Infection Prevention
Important measures include:
- Immunisation
- Safe drinking water
- Hand hygiene
- Sanitation
- Deworming where indicated
- Early management of diarrhoeal and respiratory infections
Growth Surveillance
Regular monitoring of weight, height and mid-upper arm circumference helps identify growth faltering before severe malnutrition develops.
Public-Health Measures
Food-security programmes, nutrition education, maternal support, community screening and early referral are essential in high-risk populations.
Kwashiorkor is an oedematous form of severe acute malnutrition characterised by bilateral pitting oedema, hypoalbuminaemia, dermatosis, hair abnormalities, hepatic steatosis, immune dysfunction and variable wasting. Its pathogenesis involves inadequate nutrient intake, systemic inflammation, oxidative stress, intestinal barrier dysfunction and abnormal hepatic metabolism.
Diagnosis is primarily clinical, supported by anthropometry and laboratory assessment. Management requires correction of hypoglycaemia, hypothermia, infection, electrolyte abnormalities and fluid imbalance, followed by cautious therapeutic feeding and structured nutritional rehabilitation. Prevention depends on maternal nutrition, breastfeeding, adequate complementary feeding, infection control, growth monitoring and improved food security.
Frequently Asked Questions
Q1. What is the principal diagnostic feature of kwashiorkor?
Ans – The defining clinical feature is bilateral pitting oedema of nutritional origin.
Q2. Is kwashiorkor caused exclusively by protein deficiency?
Ans – No. It is a multifactorial disorder involving deficiencies of energy, protein and micronutrients, together with infection, inflammation, oxidative stress and intestinal dysfunction.
Q3. Why does hepatomegaly occur?
Ans – Hepatomegaly results primarily from hepatic triglyceride accumulation caused by defective lipoprotein synthesis and impaired lipid export.
Q4. Can kwashiorkor coexist with severe wasting?
Ans – Yes. Severe wasting associated with bilateral oedema is termed marasmic kwashiorkor.
Q5. Why is rapid feeding dangerous?
Ans – Rapid nutritional loading may cause refeeding syndrome, electrolyte shifts, sodium and water retention, cardiac dysfunction and respiratory failure.
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