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J Torday

Publications and source records attributed to J Torday.

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Association of intrauterine cigarette smoke exposure with indices of fetal lung maturation.

The timing of fetal lung maturation is regulated, at least in part, by the fetal endocrine milieu, which in turn may be influenced by environmental factors. Infants of smoking mothers are at decreased risk of neonatal respiratory distress syndrome (RDS), a disease of lung immaturity. Therefore, we measured fetal lung maturity and cigarette smoke exposure to determine whether the lungs of smoke-exposed fetuses mature more quickly and whether changes in maturation are associated with alterations in amniotic fluid (AF) cortisol levels. Amniotic fluid lecithin-sphingomyelin ratio (L/S) and saturated phosphatidylcholine levels were used as measures of lung maturity, while smoke exposure was assessed by measuring AF cotinine, a stable nicotine metabolite. Lung maturity was more advanced in smoke-exposed fetuses as measured by saturated phosphatidylcholine (P = .02) and L/S ratio (P = .04). Smoke-exposed fetuses attained sufficient lung maturity to minimize the risk of RDS approximately 1 week earlier than in unexposed fetuses. The AF of smoke-exposed fetuses also had higher levels of free, conjugated, and total cortisol. Acceleration of lung maturation in smoke-exposed fetuses is consistent with the decreased risk of RDS in infants of smoking mothers. Maternal smoking could influence lung maturation by directly or indirectly enhancing the production and/or secretion of cortisol. Despite the decreased risk of RDS, the developmental process by which smoke-exposed fetuses attain early pulmonary maturity is abnormal and may contribute to the decreased lung function and increased respiratory illness noted in infants of smoking mothers.

Adult

Saturated phosphatidylcholine in amniotic fluid and prediction of the respiratory-distress syndrome.

The lecithin/sphingomyelin (L/S) ratio in amniotic fluid is widely used to predict the risk of respiratory-distress syndrome. However, the results are unreliable if the specimen is contaminated or obtained during a complicated pregnancy. We therefore compared the predictive value of the L/S ratio with that of the concentration of saturated phosphatidylcholine (SPC) in 322 amniotic-fluid samples, 75 per cent of which were contaminated or obtained during complicated pregnancies or both. A positive result is one that predicted the development of respiratory-distress syndrome, taken as an L/S ratio equal to or less than 2/1 or an SPC below 500 mug per deciliter. The respiratory-distress syndrome was correctly predicted in 25 of 45 cases (55.5 per cent) with L/S ratios equal to or less than 2/1, and in 35 of 42 cases (82 per cent) with SPC's less than 500 mug per deciliter. When L/S ratios were greater than 2/1, there were 13 of 277 (4.7 per cent) false negatives, and when SPC's were above 500 mug per deciliter, there were three of 280 (1.1 per cent) false negatives. We conclude that determination of SPC is both more specific and more sensitive as a predictor of the respiratory-distress syndrome than the techniques currently in use.

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