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Bovine Steroid Hormone and SHBG Concentrations Postpartum and during the Oestrous Cycle

机译:牛类固醇激素和Shbg浓度产后和在令人垂循环期间

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摘要

Changes in consecutive estimates of milk progesterone concentrations and serum steroid hormone and sex hormone-binding globulin (SHBG) concentrations in the postpartum period were examined in Finnish Ayrshire and Friesian dairy cows which were divided according to feeding into a hay group and a silage group. Milk progesterone concentrations rose above 10 nmol/1, indicating the start of ovarian luteal activity, slightly earlier in the silage group (28.4 ± 8.7 (S.D.) days, n = 19) than in the hay group (33.4 ± 10.3, n = 28) after calving. Likewise, the first normal oestrous cycles began slightly earlier in cows fed with silage. On the other hand, no differences in the beginning of ovarian luteal activity were observed between the breeds. Serum oestradiol-17β, oestrone, testosterone, 5α-dihydrotestosterone (5α-DHT), pregnenolone and progesterone concentrations were fairly unchanged during postpartum anoestrus after uterine involution and before ovarian cyclic activity. After first ovulation, considerable increases in milk and serum progesterone concentrations were observed. The increase was accompanied by elevations in serum pregnenolone and 5α-DHT concentrations. In the late luteal phase, progesterone, 5α-DHT and pregnenolone concentrations rapidly declined, leading to low hormone levels in pro-oestrus. Thereafter, serum pregenolone and 5α-DHT concentrations slightly increased during the follicular phase. On the other hand, oestradiol-17β concentrations were elevated in pro-oestrus and decreased after that, being lowest at met-oestrous. Serum testosterone concentrations appeared to be unchanged during postpartum anoestrus and over the oestrous cycle. Serum SHBG concentrations were unchanged during postpartum anoestrus and over the oestrous cycle, as well as in pregnant animals. The serum SHBG concentrations were about double those found in women with normal menstrual cycles, whereas oestradiol concentrations were much lower. At present, it cannot be explained how the biological effects of oestradiol become evident under such conditions.
机译:在芬兰艾尔郡和弗里斯奶牛和弗里斯乳奶牛中,将根据饲喂于干草组和青贮组织分割,在产后期间连续估算牛奶孕酮浓度和血清类固醇激素和性激素结合球蛋白(SHBG)浓度的变化。牛奶孕酮浓度上升至10诺米酚/ 1,表明卵巢耐力活动的开始,在青贮组织中略早略早(28.4±8.7(SD)天,N = 19),而不是在干草组中(33.4±10.3,n = 28 )产犊后。同样,第一个正常的令人愉快的循环开始于用青贮饲喂的奶牛略早。另一方面,在品种之间观察到卵巢生成活性开始的差异。血清Ostradiol-17β,Ostrone,睾酮,5α-二氢睾酮(5α-DHT),孕烯醇酮和孕酮浓度在子宫的阴部和卵巢循环活性之前在产后Anoestrus期间相当不变。在首先排卵后,观察到牛奶和血清孕酮浓度的相当大增加。增加伴随着血清孕蛋白和5α-DHT浓度的升高。在晚期失败期,孕酮,5α-DHT和妊娠浓度迅速下降,导致Pro-Ostrus中的低激素水平。此后,在滤泡相期间,血清前苯甲酮和5α-DHT浓度略微增加。另一方面,Ostradiol-17β浓度在Pro-Ostrus中升高,然后在欧洲怀有时最低降低。血清睾酮浓度似乎在产后Anoestrus和令人垂涎的循环期间保持不变。血清SHBG浓度在产后Anoestrus和令人垂涎的动物中,以及孕妇。血清SHBG浓度约为月经周期患者中的女性中的两倍,而Ostradiol浓度要低得多。目前,不能解释Ostradiol的生物学效应在这种情况下如何变得明显。

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