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Follicular and hormonal response to experimental suppression of FSH duringfollicle deviation in cattle

机译:牛卵泡偏离期间实验性抑制FSH的卵泡和激素反应

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A near steroid-free fraction of bovine follicular fluid was used to suppress FSH concentrations at the expected time of follicle deviation or when the largest follicle of Wave 1 reached greater than or equal to8.0 mm (actual mean diameter, 8.4 mm; Hour 0). It was hypothesized that the low concentrations of FSH associated with deviation are inadequate for the smaller follicles but are needed for continued growth of the largest follicle. Control heifers (n=8) received 10 mL of saline, and treated heifers (n=16) received either 8.8 mL or 13.3 mL of the follicular-fluid fraction at Hours 0, 12, and 24. Between Hours -48 and 0, FSH concentrations decreased (P<0.05) and diameters of the 4 largest follicles increased (Hour effect, P<0.0001) similarly between groups. Concentrations of LH in the controls increased (P<0.05) between Hours -24 and -12 and decreased (P<0.05) between Hours 8 and 36, demonstrating a transient LH surge encompassing the expected beginning of deviation. In the treated group, a comparable increase in LH occurred before deviation but a decrease did not occur until after Hour 48. By Hour 4.5, the FSH concentrations in the treated group decreased (P<0.05) to below the concentrations in the controls. Suppressed diameter (P<0.001) of the largest follicle was detected at the first post-treatment examination (Hour 12; 7.5 h after FSH suppression) and was accompanied by reduced (P<0.04) systemic estradiol concentrations. The mean growth rates of the 3 smaller follicles in both the treated and control groups began to decrease at Hours -12 to 24 and were not different between groups during Hours 0 to 36. Concentrations of FSH in the treated group returned to control concentrations by Hour 24 (hour of last treatment). A rebound (P<0.05) in concentrations of FSH to >100% above control concentrations occurred by Hour 48 and was accompanied by resumed growth of the largest follicle in 75% of the heifers between Hours 48 and 72. The results demonstrated that the low concentrations of FSH associated with deviation can be further reduced by treatment with a nonsteroidal factor of follicular origin. Transient reduction of FSH concentrations to below the already low control concentrations inhibited the largest follicle but did not further inhibit the smaller follicles. These results support the hypothesis that the low FSH concentrations associated with follicle deviation are below the minimal requirements of the smaller or subordinate follicles but are needed for continued growth of the largest or dominant follicle in cattle.
机译:牛卵泡液中几乎不含类固醇的部分被用来在预期卵泡偏离时或在Wave 1的最大卵泡达到或大于8.0 mm时抑制FSH浓度(实际平均直径为8.4 mm;小时0 )。假设与偏斜相关的低浓度FSH对于较小的卵泡是不充分的,但是对于最大卵泡的持续生长是必需的。对照小母牛(n = 8)在10、12和24小时分别接受了10 mL生理盐水,而处理过的小母牛(n = 16)则接受了8.8 mL或13.3 mL卵泡液组分。在-48和0之间,组之间FSH浓度降低(P <0.05),最大的4个卵泡直径增加(小时效应,P <0.0001)。对照中LH的浓度在-24和-12小时之间升高(P <0.05),而在8和36小时之间降低(P <0.05),这表明瞬时LH激增涵盖了预期的偏差开始。在治疗组中,LH在偏离之前发生了相当的增加,但直到第48小时后才出现降低。到第4.5小时,治疗组中的FSH浓度降低了(P <0.05)至低于对照组的浓度。在治疗后的第一个检查中(第12小时; FSH抑制后7.5小时)检测到最大卵泡直径降低(P <0.001),并伴有全身性雌二醇浓度降低(P <0.04)。治疗组和对照组中3个较小卵泡的平均生长率在-12至24小时开始下降,并且在0至36小时之间各组之间没有差异。治疗组中FSH的浓度按小时恢复至对照浓度24(最后治疗小时)。在第48小时,FSH浓度反弹至高于对照浓度100%以上(P <0.05),并伴随着第48至72小时的75%的小母牛恢复最大卵泡的生长。通过使用非甾体类滤泡因子治疗,可以进一步降低与偏差相关的FSH浓度。将FSH浓度瞬时降低至低于已经达到的低对照浓度会抑制最大的卵泡,但不会进一步抑制较小的卵泡。这些结果支持以下假设:与卵泡偏离相关的低FSH浓度低于较小或次级卵泡的最低要求,但牛中最大或优势卵泡的持续生长是必需的。

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