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      Pathophysiology of persistent pulmonary hypertension of the newborn: impact of the perinatal environment.

      Archives of cardiovascular diseases
      Adaptation, Physiological, Cardiovascular Agents, therapeutic use, Cesarean Section, adverse effects, Environment, Extracorporeal Membrane Oxygenation, Female, Hemodynamics, Humans, Infant, Newborn, Maternal Exposure, Pain, complications, Persistent Fetal Circulation Syndrome, diagnosis, etiology, physiopathology, therapy, Pregnancy, Pulmonary Circulation, Respiration, Artificial, Risk Factors, Stress, Physiological, Tobacco Smoke Pollution, Treatment Outcome

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          Abstract

          The main cause of pulmonary hypertension in newborn babies results from the failure of the pulmonary circulation to dilate at birth, termed 'persistent pulmonary hypertension of the newborn' (PPHN). This syndrome is characterized by sustained elevation of pulmonary vascular resistance, causing extrapulmonary right-to-left shunting of blood across the ductus arteriosus and foramen ovale and severe hypoxaemia. It can also lead to life-threatening circulatory failure. There are many controversial and unresolved issues regarding the pathophysiology of PPHN, and these are discussed. PPHN is generally associated with factors such as congenital diaphragmatic hernia, birth asphyxia, sepsis, meconium aspiration and respiratory distress syndrome. However, the perinatal environment-exposure to nicotine and certain medications, maternal obesity and diabetes, epigenetics, painful stimuli and birth by Caesarean section-may also affect the maladaptation of the lung circulation at birth. In infants with PPHN, it is important to optimize circulatory function. Suggested management strategies for PPHN include: avoidance of environmental factors that worsen PPHN (e.g. noxious stimuli, lung overdistension); adequate lung recruitment and alveolar ventilation; inhaled nitric oxide (or sildenafil, if inhaled nitric oxide is not available); haemodynamic assessment; appropriate fluid and cardiovascular resuscitation and inotropic and vasoactive agents. Copyright © 2013 Elsevier Masson SAS. All rights reserved.

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