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兔胎儿肺作为一种糖皮质激素靶组织。

The rabbit fetal lung as a glucocorticoid target tissue.

作者信息

Torday J S, Smith B T, Giroud C J

出版信息

Endocrinology. 1975 Jun;96(6):1462-7. doi: 10.1210/endo-96-6-1462.

Abstract

Fetal lung cells from 28 day gestation rabbits cultured in the presence of cortisol (5.5 times 10 - minus 6M) or dexamethasone (5.5 times 10- minus 8M) incorporated [3-H] choline into lecithin to a significantly greater extent than did control cultures. 11-Deoxycortisol, 21-deoxycortisol and 11beta-hydroxyprogesterone, at a concentration of 5.5 times 10- minus 5 M, had no effect on lecithin synthesis. However, when lung cells were simultaneously exposed to these steroids and to cortisol at the concentrations quoted, [3-H] choline incorporation was reduced to control values. Cortisone (5.5 times 10- minus M) also enhanced lecithin synthesis, the activity of the steroid likely being related to the capacity of the lung cells to convert cortisone to cortisol. This hypothesis was supported by the observations that 11-ketoprogesterone (1.3 times 10- minus 5M), which totally inhibited the conversion of cortisone to cortisol and which had no effect of its own on [3-H] choline incorporation, inhibited the effect of cortisone on lecithin synthesis but not that of cortisol. These data support the view that glucocorticoids affect lung cell maturation in a manner comparable to the interaction of other steroid hormones with their target tissues. The capacity of the fetal lung to convert cortisone to cortisol may be physiologically significant in light of the high concentration of 11-oxo-steroids in the fetal circulation throughout pregnancy.

摘要

在皮质醇(5.5×10⁻⁶M)或地塞米松(5.5×10⁻⁸M)存在的情况下培养的妊娠28天兔子的胎儿肺细胞,比对照培养物将[³H]胆碱掺入卵磷脂的程度明显更高。浓度为5.5×10⁻⁵M的11-脱氧皮质醇、21-脱氧皮质醇和11β-羟基孕酮对卵磷脂合成没有影响。然而,当肺细胞同时暴露于这些类固醇和上述浓度的皮质醇时,[³H]胆碱掺入量降至对照值。可的松(5.5×10⁻⁶M)也增强了卵磷脂合成,该类固醇的活性可能与肺细胞将可的松转化为皮质醇的能力有关。这一假设得到了以下观察结果的支持:11-酮孕酮(1.3×10⁻⁵M)完全抑制可的松向皮质醇的转化,其本身对[³H]胆碱掺入没有影响,但抑制了可的松对卵磷脂合成的作用,而不影响皮质醇的作用。这些数据支持这样一种观点,即糖皮质激素以与其他类固醇激素与其靶组织相互作用相当的方式影响肺细胞成熟。鉴于整个孕期胎儿循环中11-氧代类固醇的高浓度,胎儿肺将可的松转化为皮质醇的能力可能具有生理意义。

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