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体外培养的分离小鼠卵巢滤泡的超微结构。

Ultrastructure of isolated mouse ovarian follicles cultured in vitro.

机构信息

Department of Anatomy, Histology, Forensic Medicine and Orthopaedics, La Sapienza University of Rome, Rome, Italy.

出版信息

Reprod Biol Endocrinol. 2011 Jan 13;9:3. doi: 10.1186/1477-7827-9-3.

Abstract

BACKGROUND

In vitro maturation of ovarian follicles, in combination with cryopreservation, might be a valuable method for preserving and/or restoring fertility in mammals with impaired reproductive function. Several culture systems capable of sustaining mammalian follicle growth in vitro have been developed and many studies exist on factors influencing the development of in vitro grown oocytes. However, a very few reports concern the ultrastructural morphology of in vitro grown follicles.

METHODS

The present study was designed to evaluate, by transmission and scanning electron microscopy, the ultrastructural features of isolated mouse preantral follicles cultured in vitro for 6 days in a standard medium containing fetal calf serum (FCS). The culture was supplemented or not with FSH.

RESULTS

The follicles cultured in FCS alone, without FSH supplementation (FCS follicles), did not form the antral cavity. They displayed low differentiation (juxta-nuclear aggregates of organelles in the ooplasm, a variable amount of microvilli on the oolemma, numerous granulosa cell-oolemma contacts, signs of degeneration in granulosa cell compartment). Eighty (80)% of FSH-treated follicles formed the antral cavity (FSH antral follicles). These follicles showed various ultrastructural markers of maturity (spreading of organelles in ooplasm, abundant microvilli on the oolemma, scarce granulosa cell-oolemma contacts, granulosa cell proliferation). Areas of detachment of the innermost granulosa cell layer from the oocyte were also found, along with a diffuse granulosa cell loosening compatible with the antral formation. Theca cells showed an immature morphology for the stage reached. Twenty (20)% of FSH-treated follicles did not develop the antral cavity (FSH non-antral follicles) and displayed morphological differentiation features intermediate between those shown by FCS and FSH antral follicles (spreading of organelles in the ooplasm, variable amount of microvilli, scattered granulosa cell-oolemma contacts, signs of degeneration in granulosa cell compartment).

CONCLUSIONS

It is concluded that FSH supports the in vitro growth of follicles, but the presence of a diffuse structural granulosa cell-oocyte uncoupling and the absence of theca development unveil the incomplete efficiency of the system. The present study contributes to explain, from a morphological point of view, the effects of culture conditions on the development of mouse in vitro grown follicles and to highlight the necessity of maintaining efficient intercellular communications to obtain large numbers of fully-grown mature germ cells.

摘要

背景

体外成熟的卵巢卵泡,结合冷冻保存,可能是一种有价值的方法来保存和/或恢复有受损生殖功能的哺乳动物的生育能力。已经开发出几种能够在体外维持哺乳动物卵泡生长的培养系统,并且有许多关于影响体外生长卵母细胞发育的因素的研究。然而,很少有关于体外生长卵泡超微结构形态的报道。

方法

本研究旨在通过透射和扫描电子显微镜评估在含有胎牛血清(FCS)的标准培养基中体外培养 6 天的分离小鼠原始卵泡的超微结构特征。培养物中添加或不添加 FSH。

结果

仅在 FCS 中培养而不添加 FSH 补充物的卵泡(FCS 卵泡)未形成腔。它们显示出低分化(卵质核周聚集的细胞器、卵母细胞膜上可变数量的微绒毛、大量颗粒细胞-卵母细胞膜接触、颗粒细胞区室退化迹象)。80%的 FSH 处理卵泡形成腔(FSH 腔卵泡)。这些卵泡显示出各种成熟的超微结构标志物(卵质中细胞器的扩散、卵母细胞膜上丰富的微绒毛、颗粒细胞-卵母细胞膜接触稀少、颗粒细胞增殖)。还发现最内层颗粒细胞层与卵母细胞分离的区域,以及与腔形成一致的弥漫性颗粒细胞松动。支持细胞表现出与所达到的阶段不成熟的形态。20%的 FSH 处理卵泡未形成腔(FSH 非腔卵泡),并显示出介于 FCS 和 FSH 腔卵泡之间的形态分化特征(卵质中细胞器的扩散、微绒毛的数量可变、颗粒细胞-卵母细胞膜接触分散、颗粒细胞区室退化迹象)。

结论

FSH 支持卵泡的体外生长,但存在弥漫性结构的颗粒细胞-卵母细胞解耦和支持细胞发育的缺失,揭示了该系统的不完全效率。本研究从形态学角度解释了培养条件对小鼠体外生长卵泡发育的影响,并强调了维持有效细胞间通讯以获得大量完全成熟的生殖细胞的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/463a/3033320/49e7d5813e9c/1477-7827-9-3-1.jpg

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