Department of OB/GYN and Women's Health Institute, Cleveland Clinic Foundation, Cleveland Clinic Fertility Center, Cleveland, Ohio, USA.
Reprod Biol Endocrinol. 2010 Oct 14;8:119. doi: 10.1186/1477-7827-8-119.
In vitro ovarian follicle culture is a new frontier in assisted reproductive technology with tremendous potential, especially for fertility preservation. Folliculogenesis within the ovary is a complex process requiring interaction between somatic cell components and the oocyte. Conventional two-dimensional culture on tissue culture substrata impedes spherical growth and preservation of the spatial arrangements between oocyte and surrounding granulosa cells. Granulosa cell attachment and migration can leave the oocyte naked and unable to complete the maturation process. Recognition of the importance of spatial arrangements between cells has spurred research in to three-dimensional culture system. Such systems may be vital when dealing with human primordial follicles that may require as long as three months in culture. In the present work we review pertinent aspects of in vitro follicle maturation, with an emphasis on tissue-engineering solutions for maintaining the follicular unit during the culture interval. We focus primarily on presenting the various 3-dimensional culture systems that have been applied for in vitro maturation of follicle:oocyte complexes. We also try to present an overview of outcomes with various biomaterials and animal models and also the limitations of the existing systems.
体外卵巢卵泡培养是辅助生殖技术的一个新领域,具有巨大的潜力,特别是在生育力保存方面。卵巢内的卵泡发生是一个复杂的过程,需要体细胞成分和卵母细胞之间的相互作用。传统的二维培养在组织培养基质上阻碍了球体生长和卵母细胞与周围颗粒细胞之间空间排列的保存。颗粒细胞的附着和迁移可能使卵母细胞裸露,无法完成成熟过程。人们认识到细胞之间空间排列的重要性,这激发了对三维培养系统的研究。在处理可能需要长达三个月培养时间的人类原始卵泡时,这种系统可能至关重要。在本研究中,我们回顾了体外卵泡成熟的相关方面,重点介绍了在培养间隔期间维持卵泡单位的组织工程解决方案。我们主要侧重于介绍已应用于卵泡-卵母细胞复合体体外成熟的各种三维培养系统。我们还试图概述各种生物材料和动物模型的结果,以及现有系统的局限性。