Greer N L, Schanberg S M, Bartolome J V
Department of Pharmacology, Duke University Medical Center, Durham, North Carolina 27710.
Pediatr Res. 1991 Feb;29(2):182-6. doi: 10.1203/00006450-199102000-00016.
Results from a number of studies suggest a role for endogenous opioids in the regulation of lung development and function. Although it is not known which opioid peptides are involved in these processes, accumulated evidence suggests a prominent role for beta-endorphin (BE). Our study examines the effect of BE on lung ornithine decarboxylase (ODC) activity in preweanling rats. ODC catalyzes the rate-limiting step in the synthesis of the polyamines spermidine and spermine, key regulators of cell growth, multiplication, and differentiation. Central (but not peripheral) administration of BE reduced lung ODC activity by as much as 80% in the 6-d-old rat. Significant decreases in ODC activity were seen at doses of BE as low as 0.5 micrograms/g brain wt. In contrast to the reductions in ODC activity, plasma levels of corticosterone in animals administered BE were approximately five times higher than those seen in control animals. BE's actions on ODC activity and plasma corticosterone levels were prevented by naloxone or naltrexone, indicating that both responses are mediated by opioid receptors. Studies of ODC kinetics showed a profound reduction in Vmax (70% below control values), but no change in Km. The effect was observed only during the first 2 wk of postnatal age, a period of time in lung maturation that is characterized by active alveolarization. Because changes in ODC levels during early postnatal life are associated with perturbations in tissue growth and/or function, the data suggest that CNS BE may influence lung maturation through an indirect action that may involve glucocorticoids.
多项研究结果表明内源性阿片类物质在肺发育和功能调节中发挥作用。尽管尚不清楚哪些阿片肽参与这些过程,但积累的证据表明β-内啡肽(BE)起着重要作用。我们的研究检测了BE对断奶前大鼠肺鸟氨酸脱羧酶(ODC)活性的影响。ODC催化多胺亚精胺和精胺合成中的限速步骤,而多胺是细胞生长、增殖和分化的关键调节因子。在6日龄大鼠中,中枢(而非外周)给予BE可使肺ODC活性降低多达80%。在BE剂量低至0.5微克/克脑重时,ODC活性就出现显著下降。与ODC活性降低相反,给予BE的动物血浆皮质酮水平比对照动物高约五倍。纳洛酮或纳曲酮可阻止BE对ODC活性和血浆皮质酮水平的作用,表明这两种反应均由阿片受体介导。ODC动力学研究显示Vmax大幅降低(比对照值低70%),但Km无变化。这种作用仅在出生后前2周观察到,这是肺成熟过程中以活跃肺泡形成为特征的一段时间。由于出生后早期ODC水平的变化与组织生长和/或功能的紊乱有关,数据表明中枢神经系统BE可能通过一种可能涉及糖皮质激素的间接作用影响肺成熟。