首页> 外文期刊>Acta veterinaria. >Immunohistochemical detection of Vasa antigen and apoptosis-related DNA fragmentation in ovaries of sheep fetuses prenatally exposed to vitamin D deficiency
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Immunohistochemical detection of Vasa antigen and apoptosis-related DNA fragmentation in ovaries of sheep fetuses prenatally exposed to vitamin D deficiency

机译:免疫组化检测出生前暴露于维生素D缺乏的绵羊胎儿卵巢中Vasa抗原和凋亡相关DNA片段

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The primordial germ cells (PGCs) in female animals are comprised of diplotene oocytes arrested in the first meiotic prophase. Expression of Vasa is one of the key factors required for subsequent resumption of development and recruitment of PGCs into the growing follicle class. Since vitamin D regulates recruitment of PGCs and developmental competence of ovarian follicles, this study was designed to investigate the expression of Vasa and rate of apoptosis in foetal ovaries prenatally restricted from dietary vitamin D. Nineteen sexually mature Welsh mountain ewes were randomly assigned to vitamin D deficient (VDD) and vitamin D control (VDC) diets from 17d before mating, up to 125d of gestation, when fetal ovaries were collected and fixed in formalin for immunohistochemistry and TUNEL assay. VDD ovaries had fewer healthy oocytes that could stain positive for Vasa as well as a lower integrated density value for DAB staining intensity. Conversely, TUNNEL staining in VDD animals showed a higher integrated density value and percentage of affected area (P<0.05). The present findings indicate that Vasa expression is decreased, while the rate of apoptosis increased in VDD fetal ovaries, and this may adversely affect resumption of growth and development of PGCs reserve.
机译:雌性动物中的原始生殖细胞(PGCs)由停在第一个减数分裂前期的二倍体卵母细胞组成。 Vasa的表达是随后恢复PGC的发育并将PGC募集到不断增长的卵泡类别所需的关键因素之一。由于维生素D调节了PGC的募集和卵巢卵泡的发育能力,因此本研究旨在调查在饮食中未摄入维生素D的胎儿卵巢中Vasa的表达和凋亡率。将十九只具有性成熟的威尔士山母羊随机分配给维生素D收集胎儿卵巢并将其固定在福尔马林中进行免疫组织化学和TUNEL分析后,从交配前17天开始,直至妊娠125d为止,均应采用缺乏(VDD)和维生素D对照(VDC)的饮食。 VDD卵巢的健康卵母细胞对Vasa染色呈阳性,而DAB染色强度的积分密度值较低。相反,在VDD动物中,TUNNEL染色显示更高的综合密度值和患病面积百分比(P <0.05)。目前的发现表明,在VDD胎儿卵巢中,Vasa表达下降,而凋亡率增加,这可能对恢复PGCs储备的生长和发育产生不利影响。

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