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首页> 外文期刊>Theriogenology >Mechanism of granulosa cell death during follicular atresia depends on follicular size
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Mechanism of granulosa cell death during follicular atresia depends on follicular size

机译:滤泡闭锁期间颗粒细胞死亡的机制取决于滤泡大小

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摘要

Changes in granulosa cell lysosomal and mitochondrial functions in relation to follicular size and to the stage of atresia were studied by fluorescent emission spectra and intensity using How cytometry. Antral follicles were grouped by size in two groups: small, 3-6 inin and large, >6 mm in diameter, and classified into three stages of atresia: non-atretic, initially atretic and advanced atretic. Differences in Rhodamine 123 (Rh123) and Acridine Orange (AO) fluorescent intensity indicated that changes in mitochondrial function are the primary mechanism of granulosa cell death in atretic follicles 3-6 mm in diameter, white its role in granulosa cell death in >6 mm atretic follicles seemed to be less important. However, modifications in lysosomal function (shown by a decrease in fluorometric intensity of AO incubated granulosa cells) were mainly associated with cell death in large atretic follicles. Our results support the hypothesis that the pathway of granulosa cell death during follicular atresia depends on the state of energy metabolism or on the production of hypoxic conditions related to follicular size. Changes in mitochondrial membrane potential and production of permeability transition pores were the main changes found in small follicles, while lysosomal function destabilization seemed to be the major cause of granulosa cell death during atresia in large follicles.
机译:颗粒细胞溶酶体和线粒体功能的变化与卵泡大小和闭锁的阶段有关,通过荧光发射光谱和强度用How细胞术研究。肛门卵泡按大小分为两组:小,3-6 inin和大,直径> 6 mm,并分为闭锁三个阶段:非闭锁,最初闭锁和晚期闭锁。若丹明123(Rh123)和A啶橙(AO)荧光强度的差异表明,线粒体功能的改变是直径3-6 mm的闭锁卵泡中颗粒细胞死亡的主要机制,白色在> 6 mm时对颗粒细胞死亡的作用为白色闭锁卵泡似乎不太重要。但是,溶酶体功能的改变(通过AO孵育的颗粒细胞的荧光强度降低显示)主要与大型闭锁卵泡中的细胞死亡有关。我们的结果支持以下假设:卵泡闭锁期间颗粒细胞死亡的途径取决于能量代谢的状态或与卵泡大小有关的缺氧条件的产生。线粒体膜电位的变化和通透性转换孔的产生是在小卵泡中发现的主要变化,而溶酶体功能失稳似乎是大卵泡闭锁期间颗粒细胞死亡的主要原因。

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