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年轻癌症患者生育力的保存:透射电子显微镜的贡献

Preservation of fertility in young cancer patients: contribution of transmission electron microscopy.

作者信息

Camboni Alessandra, Martinez-Madrid Belen, Dolmans Marie-Madeleine, Amorim Christiani Andrade, Nottola Stefania A, Donnez Jacques, Van Langendonckt Anne

机构信息

Department of Gynecology, Université Catholique de Louvain, 1200 Brussels, Belgium.

出版信息

Reprod Biomed Online. 2008 Jul;17(1):136-50. doi: 10.1016/s1472-6483(10)60303-3.

Abstract

During the last decade, new technologies in reproductive medicine have emerged to preserve the fertility of women whose gonadal function is threatened by premature menopause or gonadotoxic treatments. To offer an individualized approach to these patients, different experimental procedures are under investigation, including oocyte cryopreservation and cryopreservation and transplantation of ovarian tissue in the form of cortical fragments, whole ovary or isolated follicles. This review shows that transmission electron microscopy (TEM), combined with other in-vivo and in-vitro analysis techniques, is a valuable tool in the establishment of new experimental protocols to preserve female fertility. Ultrastructural studies allow in-depth evaluation of the oocyte's unique morpho-functional characteristics, which explain its low cryotolerance, and provide essential information on follicular, stromal and endothelial cell integrity, as well as cellular interactions crucial for normal folliculogenesis. In order to be able to offer appropriate and efficient options in every clinical situation, oocyte in-vitro maturation and ovarian tissue transplantation need to be optimized. Further development of new approaches, such as follicular isolation and whole ovary transplantation, should be encouraged. Fine ultrastructural details highlighted by TEM studies will be useful for the further optimization of these emerging technologies.

摘要

在过去十年中,生殖医学领域出现了新技术,以保护性腺功能因过早绝经或性腺毒性治疗而受到威胁的女性的生育能力。为了为这些患者提供个性化的治疗方法,不同的实验程序正在研究中,包括卵母细胞冷冻保存以及以皮质碎片、整个卵巢或分离卵泡形式进行的卵巢组织冷冻保存和移植。本综述表明,透射电子显微镜(TEM)与其他体内和体外分析技术相结合,是建立保护女性生育能力的新实验方案的宝贵工具。超微结构研究能够深入评估卵母细胞独特的形态功能特征,这些特征解释了其低温耐受性低的原因,并提供有关卵泡、基质和内皮细胞完整性以及正常卵泡发生至关重要的细胞间相互作用的重要信息。为了能够在每种临床情况下提供合适且有效的选择,需要优化卵母细胞体外成熟和卵巢组织移植。应鼓励进一步开发新方法,如卵泡分离和全卵巢移植。TEM研究突出的精细超微结构细节将有助于进一步优化这些新兴技术。

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