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原始卵泡对两种卵巢皮质获取及玻璃化方法的反应:一项初步研究

Primordial Follicle Response to Two Methods of Ovarian Cortex Retrieval and Vitrification: A Pilot Study.

作者信息

Chávez-Genaro Rebeca, Anesetti Gabriel, Bonjour Lorena, Fernández Clara, Toledo Agustina, Hernández Karina, Barrera Natalibeth, Cantú Lidia, Kimelman Dana

机构信息

Histology and Embryology, Universidad de la República, Montevideo, URY.

Embryology, Centro de Esterilidad Montevideo, Montevideo, URY.

出版信息

Cureus. 2025 May 27;17(5):e84918. doi: 10.7759/cureus.84918. eCollection 2025 May.

Abstract

Cryopreservation and transplantation of ovarian cortical tissue are novel techniques to preserve fertility in young patients undergoing gonadotoxic treatments that may affect fertility. Vitrification has demonstrated growing success in restoring ovarian function and achieving pregnancy post-grafting. It helps maintain communication between follicles and interstitial tissue, which is essential for follicular growth. This study compares two ovarian cortex dissection techniques (strips and layers) using an ovine animal model. The results indicate that manipulation of the ovarian cortex affects primordial follicle activation and stromal tissue during vitrification, potentially compromising oocyte viability and reproductive potential. Additionally, the distribution of primordial follicles in ovarian tissue varies, influencing transplantation efficiency. Both dissection methods increase follicle activation, suggesting that mechanical manipulation impacts outcomes. These findings underscore the need to optimize tissue processing to enhance fertility preservation, particularly by understanding the roles of the stromal and extracellular matrix (ECM) in maintaining follicle dormancy and viability post-vitrification and reimplantation.

摘要

卵巢皮质组织的冷冻保存和移植是在接受可能影响生育能力的性腺毒性治疗的年轻患者中保存生育能力的新技术。玻璃化冷冻在恢复卵巢功能和移植后实现妊娠方面已显示出越来越高的成功率。它有助于维持卵泡与间质组织之间的沟通,这对卵泡生长至关重要。本研究使用绵羊动物模型比较了两种卵巢皮质解剖技术(条带法和分层法)。结果表明,在玻璃化冷冻过程中,对卵巢皮质的操作会影响原始卵泡的激活和间质组织,可能会损害卵母细胞的活力和生殖潜力。此外,卵巢组织中原始卵泡的分布各不相同,影响移植效率。两种解剖方法都会增加卵泡的激活,这表明机械操作会影响结果。这些发现强调了优化组织处理以提高生育力保存的必要性,特别是通过了解基质和细胞外基质(ECM)在玻璃化冷冻和再植入后维持卵泡休眠和活力中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52d3/12202021/e20cdcfadc6f/cureus-0017-00000084918-i01.jpg

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