首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >IMPAIRMENT IN FOLLICLE-STIMULATING HORMONE SECRETION BY DIFFERENT TREATMENTS WITH FOLLICULAR FLUID AS A SOURCE OF INHIBIN BLOCKS THE ABILITY OF PULSATILE LUTEINIZING HORMONE TO INDUCE PREOVULATORY SURGES OF GONADOTROPINS IN PREPUBERTAL EWE LAMBS
【24h】

IMPAIRMENT IN FOLLICLE-STIMULATING HORMONE SECRETION BY DIFFERENT TREATMENTS WITH FOLLICULAR FLUID AS A SOURCE OF INHIBIN BLOCKS THE ABILITY OF PULSATILE LUTEINIZING HORMONE TO INDUCE PREOVULATORY SURGES OF GONADOTROPINS IN PREPUBERTAL EWE LAMBS

机译:以烟碱为源的不同液体处理对激素刺激激素分泌的阻滞作用,可能会引起脂蛋白化激素的产生,从而引起产前羊羔中促性腺激素的前期手术

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This study was conducted to investigate whether FSH can affect the ability of pulsatile exogenous LH to induce a preovulatory surge of gonadotropins in prepubertal ewe lambs. March-born ewe lambs were randomly assigned in November to the following treatments: 1) control; 2) 1.5 ml charcoal-extracted bovine follicular fluid (bFF) for 240 h; 3) 1.5 mi bFF for 72 h; and 4) 3 mt bFF for 72 h. Follicular fluid was administered as a source of inhibin to reduce secretion of FSH. Starting at 0 h, all animals were given (i.v.) 10 mu g ovine LH every h for a 48-h period. Lambs in the control group did not receive further treatment. Females in group 2 were administered (s.c.) 1.5 mt bFF every 8 h from -184 h to 56 h. In groups 3 and 4, lambs received (s.c.) 1.5 mt bFF and 3 mi bFF, respectively, every 8 h from -16 h to 56 h. Preovulatory surges of LH and FSH occurred concomitantly in 4 of 6 control lambs at a mean time of 34 h (range 20-42 h). In contrast, none of the females in groups 2, 3, or 4 showed a preovulatory surge of gonadotropins in response to pulsatile LH (p < 0.05). At -16 h, FSH was reduced in the ewe lambs of group 2 (p < 0.01). Thereafter, mean concentrations and area under the curve for FSH were lower (p < 0.001), and variability in the pattern of secretion was reduced (p < 0.05), in lambs of groups 2, 3, and 4 as compared to controls. LH, apart from the preovulatory surge, was not affected. Females in groups 2, 3, and 4 secreted less estradiol than controls (p < 0.01). Mean concentrations and area under the curve for estradiol during the 20 h preceding preovulatory surges (20 h = earliest surge) in controls were greater than those during the 20 h preceding 34 h (34 h = mean time for surges) in lambs that did not show a surge (p < 0.001). The induced luteal phases were of short duration, and no animal continued to cycle. Ovarian follicular development was evident in the majority (8 of 10) of the randomly selected lambs examined by laparoscopy during the expected midluteal phase. In summary, long- and short-term administration of bFF resulted in reduced concentrations of FSH, preventing the ability of pulsatile LH to induce a preovulatory surge of gonadotropins in prepubertal ewe lambs. The decrease in estradiol associated with the bFF-induced reduction in FSH may have been the mechanism responsible for the lack of LH and FSH surges. It is proposed that unimpaired secretion of FSH is required for treatment with LH to induce preovulatory surges of gonadotropins in this model.
机译:这项研究旨在研究FSH是否会影响搏动性外源性LH诱导青春期前母羊促性腺激素排卵前激增的能力。 3月出生的母羊羔羊在11月被随机分配到以下处理方法:1)对照; 2)1.5 ml木炭提取的牛卵泡液(bFF)持续240 h; 3)1.5英里bFF持续72小时;和4)3吨bFF,持续72小时。给予卵泡液作为抑制素的来源,以减少FSH的分泌。从0小时开始,在48小时的时间内,每h给所有动物(静脉注射)10μg绵羊LH。对照组的羔羊未接受进一步治疗。第2组中的雌性从-184小时至56小时每8小时(皮下)给予1.5 mt bFF。在第3组和第4组中,从-16小时至56小时每8小时分别接受(皮)1.5 mt bFF和3 mi bFF的羔羊。 LH和FSH排卵前期激增同时发生在6只对照羔羊中的4只中,平均时间为34小时(范围为20-42小时)。相反,第2、3或4组中的女性均未显示对搏动性LH的促性腺激素排卵前期激增(p <0.05)。在-16 h,第2组母羊的FSH降低(p <0.01)。此后,与对照组相比,第2组,第3组和第4组的羔羊的FSH的平均浓度和曲线下面积较低(p <0.001),并且分泌模式的变异性降低(p <0.05)。除了排卵前激增,LH不受影响。第2、3和4组中的女性分泌的雌二醇少于对照组(p <0.01)。在对照组中,排卵前激增前20 h(20 h =最早的激增)中雌二醇的平均浓度和曲线下面积大于未排卵前34 h(34 h =平均激增时间)的对照中的羔羊。出现波动(p <0.001)。诱导的黄体期持续时间短,并且没有动物继续循环。在预期的黄体中期,通过腹腔镜检查检查的随机选择的羔羊中的大多数(10个中有8个)明显可见卵巢卵泡发育。总之,长期和短期施用bFF导致FSH浓度降低,从而阻止了搏动性LH诱导青春期前母羊促性腺激素排卵前激增的能力。雌二醇的减少与bFF引起的FSH减少有关,可能是导致LH和FSH缺乏的原因。提出在该模型中用LH治疗要求促性腺激素排卵前激增需要FSH的分泌不受损害。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号