Massa R, Cresti L, Martini L
J Endocrinol. 1977 Dec;75(3):347-54. doi: 10.1677/joe.0.0750347.
The metabolism of testosterone was studied in vitro in anterior pituitary, hypothalamic and hyperstriatal tissues taken from male European starlings in the autumn. In all the tissues studied, testosterone was converted into 5alpha-androstan-17beta-ol-3-one (5alpha-DHT), 5beta-androstan-17beta-ol-3-one (5beta-DHT), 5beta-androstane-3alpha,17beta-diol (5beta-THT), 5beta-androstane-3,-17-dione and androst-4-ene-3,17-dione. The 5alpha-DHT was produced in significantly greater amounts by the pituitary gland than by the hypothalamus and hyperstriatum. The amount of 5alpha-DHT produced, however, was very low in comparison with the amounts of 5beta-reduced metabolites. The amount of 5beta-reductase was also higher in the pituitary gland than in the two nervous tissues. The ratios between the production of 5beta-DHT, 5beta-THT and 5beta-androstane-3,17-dione were, however, different in the three tissues: 5beta-DHT was produced in the greatest quantities by the hyperstriatum, while the production of 5beta-THT, 5beta-androstane-3,17-dione and androst-4-ene-3,17-dione was greatest in pituitary tissue. The role of 5alpha- and 5beta-reduced metabolites in the pituitary gland and in the brain of birds is unknown, but some possibilities arising from the present results are discussed.
对秋季雄性欧洲椋鸟的垂体前叶、下丘脑和上纹状体组织进行了睾酮体外代谢研究。在所有研究的组织中,睾酮被转化为5α-雄甾烷-17β-醇-3-酮(5α-DHT)、5β-雄甾烷-17β-醇-3-酮(5β-DHT)、5β-雄甾烷-3α,17β-二醇(5β-THT)、5β-雄甾烷-3,17-二酮和雄甾-4-烯-3,17-二酮。垂体产生的5α-DHT量显著高于下丘脑和上纹状体。然而,与5β-还原代谢物的量相比,产生的5α-DHT量非常低。垂体中的5β-还原酶量也高于两个神经组织。然而,三种组织中5β-DHT、5β-THT和5β-雄甾烷-3,17-二酮的生成比例不同:上纹状体产生的5β-DHT量最大,而垂体组织中5β-THT、5β-雄甾烷-3,17-二酮和雄甾-4-烯-3,17-二酮的生成量最大。5α-和5β-还原代谢物在鸟类垂体和大脑中的作用尚不清楚,但根据目前的结果讨论了一些可能性。