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Gene expression in mouse ovarian follicle development in vivo versus an ex vivo alginate culture system

机译:体内小鼠卵泡发育中的基因表达与离体藻酸盐培养系统的比较

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Ovarian follicle maturation results from a complex interplay of endocrine, paracrine, and direct cell–cell interactions. This study compared the dynamic expression of key developmental genes during folliculogenesis in vivo and during in vitro culture in a 3D alginate hydrogel system. Candidate gene expression profiles were measured within mouse two-layered secondary follicles, multi-layered secondary follicles, and cumulus–oocyte complexes (COCs). The expression of 20 genes involved in endocrine communication, growth signaling, and oocyte development was investigated by real-time PCR. Gene product levels were compared between i) follicles of similar stage and ii) COCs derived either in vivo or by in vitro culture. For follicles cultured for 4 days, the expression pattern and the expression level of 12 genes were the same in vivo and in vitro. Some endocrine (cytochrome P450, family 19, subfamily A, polypeptide 1 (Cyp19a1) and inhibin βA subunit (Inhba)) and growth-related genes (bone morphogenetic protein 15 (Bmp15), kit ligand (Kitl), and transforming growth factor β receptor 2 (Tgfbr2)) were downregulated relative to in vivo follicles. For COCs obtained from cultured follicles, endocrine-related genes (inhibin α-subunit (Inha) and Inhba) had increased expression relative to in vivo counterparts, whereas growth-related genes (Bmp15, growth differentiation factor 9, and kit oncogene (Kit)) and zona pellucida genes were decreased. However, most of the oocyte-specific genes (e.g. factor in the germline α (Figla), jagged 1 (Jag1), and Nlrp5 (Mater)) were expressed in vitro at the same level and with the same pattern as in vivo-derived follicles. These studies establish the similarities and differences between in vivo and in vitro cultured follicles, guiding the creation of environments that maximize follicle development and oocyte quality.
机译:卵巢滤泡成熟是由于内分泌,旁分泌和直接细胞间相互作用的复杂相互作用所致。这项研究在3D海藻酸盐水凝胶系统中比较了体内和体外培养中卵泡形成过程中关键发育基因的动态表达。在小鼠的两层次生卵泡,多层次生卵泡和卵丘-卵母细胞复合体(COC)中测量了候选基因的表达谱。通过实时PCR研究了涉及内分泌通讯,生长信号和卵母细胞发育的20个基因的表达。比较了i)相似阶段的卵泡和ii)体内或体外培养产生的COC之间的基因产物水平。对于培养4天的卵泡,体内和体外12个基因的表达模式和表达水平相同。一些内分泌(细胞色素P450,家族19,亚家族A,多肽1(Cyp19a1)和抑制素βA亚基(Inhba))和与生长相关的基因(骨形态发生蛋白15(Bmp15),试剂盒配体(Kit1)和转化生长因子β受体2(Tgfbr2))相对于体内卵泡下调。对于从培养的卵泡获得的COC,与体内对应物相比,内分泌相关基因(抑制素α亚基(Inha)和Inhba)的表达增加,而与生长相关的基因(Bmp15,生长分化因子9和试剂盒癌基因(Kit)) )和透明带基因减少。但是,大多数卵母细胞特异性基因(例如种系α中的因子(Figla),锯齿状1(Jag1)和Nlrp5(Mater))在体外表达的水平与体内衍生的表达水平相同。卵泡。这些研究建立了体内和体外培养的卵泡之间的异同,指导了创造能够最大化卵泡发育和卵母细胞质量的环境。

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