甲基甲醚(ICI化合物33,828)对花斑壁虎卵巢卵泡发生和甾体潜能的影响

B. Y. Gouder, Rahul M. Handi, V. Vani, Gopal M. Advi Rao, Laxmi S. Inamdar (Doddamani)
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摘要

在脊椎动物中,促性腺激素在脊椎动物卵巢发育及其内分泌功能中起着至关重要的作用。目前的研究设想确定甲基化是如何影响10日龄雌性花斑斑蝶幼雏发育中的卵巢的组织解剖结构和类固醇生成能力的。在繁殖季节从怀孕的雌虫身上采集卵,在31.5±0.5℃的产卵温度下孵育直至孵化。用活白蚁喂养幼仔。10日龄雌雏鸟腹腔注射甲醇6μg,加入0.05ml 0.7%生理盐水,隔日注射,连续注射21 d。用适当的盐水处理过的幼龟作为对照。结果显示,与基线对照组相比,甲基沙脲显著减少卵母细胞数量(P<0.02)和原始卵泡数量(P<0.001),降低原始卵泡直径,增加卵泡前闭锁卵泡数量(P<0.001),同时抑制卵巢发育进程。发现三种类型的闭锁卵泡。卵泡卵浆及间质区Δ5-3β-hydroxysteroid脱氢酶组织酶活性降低。激素生成下调可能是由于性腺激素分泌被剥夺,药物作用于下丘脑-垂体-卵巢轴,扰乱了负反馈机制。本研究揭示了甲基甲醚作为一种抗促性腺激素药物改变垂体促性腺激素的合成和分泌。推测甲基甲醚可能通过抑制垂体促性腺激素而对初生雏鸟产生抗促性腺激素作用。
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The Effect of Methallibure (ICI Compound 33, 828) on Folliculogenesis and Steroidogenic Potential of Developing Ovary in the Lizard, Calotes versicolor (Daud.)
In vertebrates, it is well established that gonadotropins are crucial for vertebrate ovarian development and its endocrine functions. The current investigation envisages determining how methallibure affects the histoanatomical structure and steroidogenic capacity of the developing ovary of 10-day-old female hatchlings of Calotes versicolor. The eggs were collected from gravid females during the breeding season and incubated at a female-producing temperature of 31.5±0.5 oC till hatching. Hatchlings were fed with live termites. Intraperitoneal injections of 6μg of methallibure in 0.05ml of 0.7% saline were injected into 10-day-old female hatchlings on alternate days for 21 days. The appropriate saline-treated hatchlings served as control. The results reveal that methallibure significantly reduces the number of oocytes (P<0.02) and primordial follicles, decreases their diameter, and increases the number of previtellogenic atretic follicles (P<0.001) with concomitant suppression of the progression of ovarian development when compared with that of baseline control. Three types of atretic follicles were noticed. The histoenzymatic activity of Δ5-3β-hydroxysteroid dehydrogenase in the ooplasm of the follicle and the stromal region showed a decreased intensity. The downregulation of steroidogenesis is probably due to the deprived secretion of gonadal steroids which disturbs the negative feedback mechanism because of the action of the drug at the hypothalamic-hypophyseal-ovarian axis. The present study unveils that methallibure acts as an antigonadotrophic drug altering the synthesis/secretion of gonadotrophin by hypophysis. It is inferred that methallibure induces an anti-gonadotropic effect in the newly hatched hatchlings probably by quenching the pituitary gonadotropins.
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