Definition And Epidemiology

  • Meconium aspiration syndrome (MAS) refers to respiratory distress in neonates born through meconium-stained amniotic fluid (MSAF).
  • MSAF complicates approximately 10% to 15% of all deliveries.
  • About 5% of neonates exposed to MSAF develop MAS in developed countries.
  • In developing countries, the incidence of MAS is much higher, ranging from 11% to 28%.

Risk Factors

Maternal FactorsFetal And Intrapartum Factors
Advanced gestation (post-term pregnancies)Intrauterine growth restriction
OligohydramniosFetal distress or perinatal asphyxia
Maternal hypertension or preeclampsiaThick meconium consistency

Pathophysiology

  • Fetal stress due to hypoxia and acidosis triggers a vagal response.
  • This response causes increased intestinal peristalsis and anal sphincter relaxation, leading to meconium passage in utero.
  • Fetal gasping efforts result in the aspiration of meconium into the airways.
  • Aspirated meconium causes respiratory distress through three main mechanisms.
  • Airway obstruction: Complete obstruction of airways results in distal atelectasis. Partial obstruction creates a ball-valve effect, which leads to localized hyperinflation and air leaks.
  • Surfactant inactivation: Fatty acids in the meconium cause atelectasis and worsen the ventilation-perfusion mismatch. Meconium also damages the alveolar-capillary membrane and reduces surfactant proteins.
  • Chemical pneumonitis: Meconium triggers the release of cytokines and activates the complement cascade. This inflammatory response can begin antenatally and progress after birth.
  • Persistent pulmonary hypertension of the newborn (PPHN): Hypoxia, hypercapnia, and acidosis induce profound pulmonary vasoconstriction. This complicates 15% to 20% of MAS cases and creates a vicious cycle of severe hypoxemia.

Clinical Features And Diagnosis

  • Neonates typically present with respiratory distress within the first 2 hours of life.
  • Symptoms include tachypnea, hypoxia, and an overinflated, barrel-like chest.

Diagnostic Investigations

ModalityKey Findings And Utility
Chest X-rayShows bilateral diffuse patchy infiltrates alternating with areas of hyperinflation. Helps identify air leaks like pneumothorax or pneumomediastinum.
Arterial Blood GasDemonstrates hypoxemia, hypercarbia, and respiratory or metabolic acidosis.
EchocardiographyEssential for neonates requiring high oxygen to diagnose co-existing PPHN or myocardial dysfunction.
Lung UltrasoundProvides good accuracy for rapid bedside diagnosis of air leaks.

Management

Delivery Room Management

  • Routine oropharyngeal and nasopharyngeal suctioning on the perineum is no longer recommended.
  • Routine endotracheal intubation for suctioning meconium is not recommended, even in non-vigorous neonates.
  • The primary emphasis must be on providing adequate ventilation and oxygenation.
  • If the infant does not improve with positive-pressure ventilation, the trachea may be suctioned using a catheter inserted through the endotracheal tube.

Respiratory Support

  • Neonates must be transferred to the neonatal intensive care unit (NICU) for close monitoring.
  • Target preductal oxygen saturation is strictly maintained between 92% and 95%.
  • Continuous positive airway pressure (CPAP): Indicated for moderate distress or an oxygen requirement exceeding 40%. Initial pressures of 5 cm H2O are used. Pneumothorax must be ruled out prior to CPAP initiation.
  • Mechanical ventilation: Indicated for CPAP failure or respiratory acidosis (pH <7.25 and pCO2 >60 mmHg).
  • Overinflated lungs require lower positive end-expiratory pressure (PEEP) to avoid air trapping.
  • High-frequency ventilation (HFV) is utilized if mean airway pressures are high or as a precursor to nitric oxide therapy.

Pharmacological And Adjuvant Therapies

  • Surfactant replacement: Exogenous surfactant improves oxygenation and decreases the need for extracorporeal membrane oxygenation (ECMO). It is recommended for severe MAS requiring invasive ventilation.
  • Inhaled nitric oxide (iNO): The treatment of choice for severe PPHN complicating MAS. It is initiated at 20 parts per million when the oxygenation index reaches 15 to 25.
  • Antibiotics: Routine administration is not indicated. They are reserved for neonates with identified risk factors for sepsis or a clinical course suggestive of infection.
  • ECMO: Utilized as a life-saving rescue therapy for neonates with refractory hypoxemic respiratory failure who fail conventional ventilation and iNO.