Mendez Uziel, Zhou Hong, Shikanov Ariella
Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, USA.
Department of Macromolecular Science & Engineering, University of Michigan, Ann Arbor, MI, USA.
Methods Mol Biol. 2018;1758:115-128. doi: 10.1007/978-1-4939-7741-3_9.
The functional unit within the ovary is the ovarian follicle, which is also a morphological unit composed of three basic cell types: the oocyte, granulosa, and theca cells. Similar to human ovarian follicles, mouse follicles can be isolated from their ovarian environment and cultured in vitro to study folliculogenesis, or follicle development for days or weeks. Over the course of the last decade, follicle culture in a three-dimensional (3D) environment exponentially improved the outcomes of in vitro folliculogenesis. Follicle culture in 3D environments preserves follicle architecture and promotes the cross talk between cells in the follicle. Hydrogels, such as polyethylene glycol (PEG), have been used for various physiological systems for regenerative purposes because they provide a 3D environment similar to soft tissues, allow diffusion of nutrients, and can be readily modified to present biological signals, including cell adhesion ligands and proteolytic degradation facilitated by enzymes secreted by the encapsulated cells. This chapter outlines the application of PEG hydrogels to the follicle culture, including the procedures to isolate, encapsulate, and culture mouse ovarian follicles. The tunable properties of PEG hydrogels support co-encapsulation of ovarian follicles with somatic cells, which further promote follicle survival and growth in vitro through paracrine and juxtacrine interactions.
卵巢内的功能单位是卵巢卵泡,它也是一个形态学单位,由三种基本细胞类型组成:卵母细胞、颗粒细胞和卵泡膜细胞。与人类卵巢卵泡相似,小鼠卵泡可以从其卵巢环境中分离出来,并在体外培养以研究卵泡发生,即卵泡发育数天或数周。在过去十年中,三维(3D)环境中的卵泡培养极大地改善了体外卵泡发生的结果。在3D环境中进行卵泡培养可保留卵泡结构,并促进卵泡内细胞间的相互作用。水凝胶,如聚乙二醇(PEG),已被用于各种生理系统以实现再生目的,因为它们提供了类似于软组织的3D环境,允许营养物质扩散,并且可以很容易地进行修饰以呈现生物信号,包括细胞粘附配体以及由封装细胞分泌的酶促进的蛋白水解降解。本章概述了PEG水凝胶在卵泡培养中的应用,包括分离、封装和培养小鼠卵巢卵泡的步骤。PEG水凝胶的可调性支持将卵巢卵泡与体细胞共封装,这通过旁分泌和近分泌相互作用进一步促进卵泡在体外的存活和生长。