Jones M T, Tiptaft E M
Br J Pharmacol. 1977 Jan;59(1):35-41. doi: 10.1111/j.1476-5381.1977.tb06974.x.
Several steroids occurring in the pathway of corticosteroid biosynthesis were investigated for their ability to exert a fast or delayed feedback inhibition of stress-induced release of corticotrophin. Rats were injected subcutaneously with vehicle or a steroid either 10 min (fast feedback) or 4 h (delayed feedback) before they were subjected to stress which consisted of a 2 min exposure to ether vapour. 2 Changes in plasma corticosterone concentration and in vitro corticosterone production by excised adrenal glands were used as indices of corticotrophin release. 3 Among the steroids tested only 11beta, 21-dihydroxypregn-4-ene-3, 20-dione (corticosterone) and 11beta, 17alpha, 21-trihydroxypregn-4-ene-3, 20-dione (cortisol) inhibited the stress response 10 min after their administration. Therefore, it appears that the fast feedback mechanism is limited to steroids with a 21-hydroxyl and a 11beta-hydroxyl group. 4 In contrast, many steroids caused inhibition of the stress response 4 h after their administration. These steroids were corticosterone, cortisol, 21-hydroxypregn-4-ene-3, 20-dione (11-deoxycorticosterone), 17alpha, 21-dihydroxypregn-4-ene-3, 20-dione (11-deoxycortisol), 11beta-hydroxypregn-4-ene-3, 20-dione (11beta-hydroxyprogesterone) and 11beta, 17alpha-dihydroxypregn-4-ene-3, 20-dione (11beta, 17alpha-dihydroxyprogesterone). Thus, either the 21-hydroxyl group (e.g. 11-deoxycorticosterone) or the 11beta-hydroxyl group (e.g. 11beta-hydroxyprogesterone) is sufficient for delayed feedback activity. The 11alpha-hydroxyl group, e.g. 11alpha, 17alpha, 21-trihydroxypregn-4-ene-3, 20-dione (11-epicortisol) renders the steroid inactive on both feedback mechanisms. 5 18,21-Dihydroxypregn-4-ene-3, 20-dione (18-hydroxydeoxycorticosterone) was found to be the only steroid that is secreted by the adrenal gland of the rat in quantities sufficient to cause exaggeration of the stress-induced release of corticotrophin. This steroid has been implicated as a possible hypertensive agent, and its role in the control of corticotrophin secretion is discussed here.
对皮质类固醇生物合成途径中存在的几种类固醇进行了研究,以考察它们对压力诱导的促肾上腺皮质激素释放产生快速或延迟反馈抑制的能力。在对大鼠施加由暴露于乙醚蒸气2分钟组成的应激之前10分钟(快速反馈)或4小时(延迟反馈),给大鼠皮下注射赋形剂或一种类固醇。2血浆皮质酮浓度的变化以及切除的肾上腺的体外皮质酮生成被用作促肾上腺皮质激素释放的指标。3在所测试的类固醇中,只有11β,21-二羟基孕-4-烯-3,20-二酮(皮质酮)和11β,17α,21-三羟基孕-4-烯-3,20-二酮(皮质醇)在给药后10分钟抑制应激反应。因此,快速反馈机制似乎仅限于具有21-羟基和11β-羟基的类固醇。4相比之下,许多类固醇在给药后4小时引起应激反应的抑制。这些类固醇是皮质酮、皮质醇、21-羟基孕-4-烯-3,20-二酮(11-脱氧皮质酮)、17α,21-二羟基孕-4-烯-3,20-二酮(11-脱氧皮质醇)、11β-羟基孕-4-烯-3,20-二酮(11β-羟孕酮)和11β,17α-二羟基孕-4-烯-3,20-二酮(11β,17α-二羟基孕酮)。因此,21-羟基(例如11-脱氧皮质酮)或11β-羟基(例如11β-羟孕酮)对于延迟反馈活性就足够了。11α-羟基,例如11α,17α,21-三羟基孕-4-烯-3,20-二酮(11-表皮质醇)使该类固醇在两种反馈机制上均无活性。5 18,21-二羟基孕-4-烯-3,20-二酮(18-羟基脱氧皮质酮)被发现是大鼠肾上腺分泌的唯一一种类固醇,其分泌量足以导致压力诱导的促肾上腺皮质激素释放的夸大。这种类固醇被认为是一种可能的高血压因子,本文讨论了它在促肾上腺皮质激素分泌控制中的作用。