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人类卵巢蛋白质组图谱草案:用于组织工程和临床应用

A Draft Map of the Human Ovarian Proteome for Tissue Engineering and Clinical Applications.

机构信息

From the ‡Pôle de Recherche en Gynécologie, Institut de Recherche Expérimentale et Clinique, Université Catholique de Louvain, Brussels, Belgium.

de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.

出版信息

Mol Cell Proteomics. 2019 Mar 15;18(Suppl 1):S159-S173. doi: 10.1074/mcp.RA117.000469. Epub 2018 Feb 23.

Abstract

Fertility preservation research in women today is increasingly taking advantage of bioengineering techniques to develop new biomimetic materials and solutions to safeguard ovarian cell function and microenvironment , and ,. However, available data on the human ovary are limited and fundamental differences between animal models and humans are hampering researchers in their quest for more extensive knowledge of human ovarian physiology and key reproductive proteins that need to be preserved. We therefore turned to multi-dimensional label-free mass spectrometry to analyze human ovarian cortex, as it is a high-throughput and conclusive technique providing information on the proteomic composition of complex tissues like the ovary. In-depth proteomic profiling through two-dimensional liquid chromatography-mass spectrometry, Western blotting, histological and immunohistochemical analyses, and data mining helped us to confidently identify 1508 proteins. Moreover, our method allowed us to chart the most complete representation so far of the ovarian matrisome, defined as the ensemble of extracellular matrix proteins and associated factors, including more than 80 proteins. In conclusion, this study will provide a better understanding of ovarian proteomics, with a detailed characterization of the ovarian follicle microenvironment, in order to enable bioengineers to create biomimetic scaffolds for transplantation and three-dimensional , culture. By publishing our proteomic data, we also hope to contribute to accelerating biomedical research into ovarian health and disease in general.

摘要

如今,女性生育力保存研究越来越多地利用生物工程技术来开发新的仿生材料和解决方案,以保护卵巢细胞功能和微环境。然而,人类卵巢的可用数据有限,动物模型和人类之间的基本差异阻碍了研究人员更广泛地了解人类卵巢生理学和需要保存的关键生殖蛋白。因此,我们转向多维无标记质谱分析人类卵巢皮质,因为它是一种高通量和结论性的技术,可提供有关卵巢等复杂组织蛋白质组组成的信息。通过二维液相色谱-质谱联用、Western 印迹、组织学和免疫组织化学分析以及数据挖掘进行深入的蛋白质组学分析,帮助我们自信地鉴定了 1508 种蛋白质。此外,我们的方法还使我们能够绘制迄今为止最完整的卵巢基质组图谱,定义为细胞外基质蛋白和相关因子的集合,包括 80 多种蛋白质。总之,这项研究将更好地了解卵巢蛋白质组学,详细描述卵巢卵泡微环境,以使生物工程师能够为移植和三维培养创造仿生支架。通过发表我们的蛋白质组学数据,我们也希望为加速卵巢健康和一般疾病的生物医学研究做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9db7/6427241/82003c19a0cf/zjw0061857360001.jpg

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