Department of Endocrinology, Institute of Zoology and Biomedical Research, Faculty of Biology, Jagiellonian University in Krakow, Kraków, Poland.
Methods Mol Biol. 2021;2273:75-84. doi: 10.1007/978-1-0716-1246-0_4.
The technological revolution in reproductive biology that started with artificial insemination procedures and embryo transfer led to the development of assisted reproduction techniques such as in vitro fertilization or even cloning of domestic animals by nuclear transfer from somatic cells. Currently, procedures of isolated immature ovarian follicles in vitro culture are becoming the prominent technology aimed to preserve or restore fertility especially of young oncological patients or those at risk of premature ovarian failure.Here, we describe a protocol that can be applied for in vitro growth of porcine, preantral ovarian follicles in three-dimensional (3D) culture conditions. After enzymatic isolation from the ovarian cortex, preantral follicles are suspended in a drop of medium and enclosed with fluorinated ethylene propylene (FEP) powder particles (microbioreactors). Such microbioreactors maintain the 3D structure of the follicles during the whole process of in vitro growth what is crucial to ensure proper folliculogenesis progression and their ability to survive.
生殖生物学中的技术革命始于人工授精和胚胎移植,随后发展出了辅助生殖技术,如体外受精,甚至通过体细胞核移植对家畜进行克隆。目前,体外培养分离的未成熟卵巢卵泡的程序正成为一种突出的技术,旨在保存或恢复生育能力,特别是针对年轻的肿瘤患者或有卵巢早衰风险的患者。在这里,我们描述了一种可应用于猪的、在三维(3D)培养条件下的、前腔卵泡体外生长的方案。在前腔卵泡从卵巢皮质中酶解分离后,将其悬浮在一滴培养基中,并包裹在氟化乙烯丙烯(FEP)粉末颗粒(微生物反应器)中。这种微生物反应器在整个体外生长过程中保持卵泡的 3D 结构,这对于确保适当的卵泡发生进展和它们的生存能力至关重要。