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Embryology in the era of proteomics

机译:蛋白质组学时代的胚胎学

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Currently, relatively little is known regarding the protein production of mammalian embryos. Unlike the genome, the proteome itself is dynamic reflecting both internal and external environmental stimuli. Until now the lack of sensitivity has remained a stumbling block for the global introduction of proteomics into the field of mammalian embryology. However, new developments in mass spectrometry have been revolutionary, utilizing protein profiling and peptide sequencing to elucidate underlying biological processes. The sensitivity of these platforms have allowed for the development of new protocols that are capable of profiling the proteome of individual mammalian oocytes and embryos. This information is fundamental to unravelling the complexity of embryo physiology including the dialogue between the developing embryo and its maternal environment. Such proteomic approaches are also assisting in the optimization of ART techniques, including oocyte cryopreservation and in vitro maturation. Embryo selection for transfer is another area of ART that should benefit in this era of proteomics. Currently, mammalian embryos are selected for transfer based on morphological grading systems. Although of great value, analysis of morphology alone cannot determine the embryo's physiological state or chromosomal complement. Subsequently, there is a need to identify in culture those embryos with the highest implantation potential. Proteomic analysis of the embryonic secretome (proteins produced by the embryo and secreted into the surrounding medium) followed by the identification of specific proteins critical for implantation, may lead to the development of a non-invasive viability assay to assist in the selection of embryos for transfer.
机译:当前,关于哺乳动物胚胎的蛋白质生产的了解相对较少。与基因组不同,蛋白质组本身是动态的,反映了内部和外部环境刺激。迄今为止,缺乏敏感性仍然是将蛋白质组学全球引入哺乳动物胚胎学领域的绊脚石。但是,质谱的新发展是革命性的,它利用蛋白质谱和肽测序来阐明潜在的生物学过程。这些平台的敏感性允许开发新的协议,该协议能够分析单个哺乳动物卵母细胞和胚胎的蛋白质组。这些信息对于弄清胚胎生理学的复杂性至关重要,包括正在发育的胚胎与其母体环境之间的对话。此类蛋白质组学方法还有助于优化ART技术,包括卵母细胞冷冻保存和体外成熟。在这个蛋白质组学时代,移植的选择是ART的另一个领域。当前,基于形态学分级系统选择哺乳动物胚胎进行转移。尽管具有很大的价值,但仅靠形态分析并不能确定胚胎的生理状态或染色体补体。随后,需要在培养中鉴定出具有最高植入潜力的那些胚胎。蛋白质组学分析胚胎分泌蛋白(由胚胎产生并分泌到周围培养基中的蛋白质),然后鉴定对植入至关重要的特定蛋白质,可能会导致无创生存力测定法的发展,以协助选择胚胎转让。

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