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通过 DDX4 表达和醛脱氢酶活性分离的成年人类卵巢细胞群体的初步表征。

Initial characterisation of adult human ovarian cell populations isolated by DDX4 expression and aldehyde dehydrogenase activity.

机构信息

Institute of Cell Biology and the Centre for Integrative Physiology, Hugh Robson Building, University of Edinburgh, Edinburgh, EH8 9XD, UK.

School of Biological Sciences, Ashworth Laboratories, the King's Buildings, University of Edinburgh, Edinburgh, EH9 3JR, UK.

出版信息

Sci Rep. 2018 May 3;8(1):6953. doi: 10.1038/s41598-018-25116-1.

Abstract

The existence of a population of putative stem cells with germline developmental potential (oogonial stem cells: OSCs) in the adult mammalian ovary has been marked by controversy over isolation methodology and potential for in-vitro transformation, particularly where cell sorting has been based on expression of DEAD box polypeptide 4 (DDX4). This study describes a refined tissue dissociation/fluorescence-activated cell sorting (FACS) protocol for the ovaries of adult women which results in increased cell viability and yield of putative OSCs. A FACS technique incorporating dual-detection of DDX4 with aldehyde dehydrogenase 1 (ALDH1) demonstrates the existence of two sub-populations of small DDX4-positive cells (approx. 7 µm diameter) with ALDH1 activity, distinguished by expression of differentially spliced DDX4 transcripts and of DAZL, a major regulator of germ cell differentiation. These may indicate stages of differentiation from a progenitor population and provide a likely explanation for the expression disparities reported previously. These findings provide a robust basis for the further characterisation of these cells, and exploration of their potential physiological roles and therapeutic application.

摘要

在成年哺乳动物卵巢中存在具有种系发育潜力的假定干细胞群体(卵原干细胞:OSCs),这一观点一直存在争议,争议的焦点是分离方法和体外转化的潜力,特别是在基于 DEAD 盒多肽 4(DDX4)表达进行细胞分选的情况下。本研究描述了一种改良的成年女性卵巢组织解离/荧光激活细胞分选(FACS)方案,该方案可提高假定 OSCs 的细胞活力和产量。一种结合 DDX4 与醛脱氢酶 1(ALDH1)双重检测的 FACS 技术表明,存在两种具有 ALDH1 活性的小 DDX4 阳性细胞亚群(约 7μm 直径),其特征在于表达差异剪接的 DDX4 转录本和 DAZL,DAZL 是生殖细胞分化的主要调节因子。这些可能表明从祖细胞群体分化的阶段,并为以前报道的表达差异提供了可能的解释。这些发现为进一步表征这些细胞提供了坚实的基础,并探索了它们潜在的生理作用和治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c0f/5934371/d30f63143f55/41598_2018_25116_Fig1_HTML.jpg

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