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首页> 外文期刊>Stem Cells >Contribution of bone marrow-derived stem cells to endometrium and endometriosis.
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Contribution of bone marrow-derived stem cells to endometrium and endometriosis.

机译:骨髓干细胞对子宫内膜和子宫内膜异位的贡献。

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Bone marrow-derived cells (BMDCs) can differentiate into nonhematopoietic cells, suggesting that BMDCs may contribute to the maintenance of multiple tissues. Donor-derived bone marrow cells have been identified in human uterine endometrium. Here, two murine models were used to investigate the contribution of nonendometrial stem cells to endometrium. We investigate whether BMDCs can localize to uterine endometrium and to endometriosis. After bone marrow transplantation, male donor-derived bone marrow cells were found in the uterine endometrium of female mice. Although uncommon (<0.01%), these cells can differentiate into epithelial cells. After generation of experimental endometriosis by ectopic endometrial implantation in the peritoneal cavity, bone marrow from LacZ transgenic mice was used for transplantation. LacZ expressing cells were found in the wild-type ectopic endometrium implanted in the peritoneal cavity of hysterectomized LacZ transgenic mice. The repopulation of endometrium with bone marrow-derived stem cells may be important to normal endometrial physiology and also may help to explain the cellular basis for the high long-term failure of conservative alternatives to hysterectomy. The examination of a sexually dimorphic organ such as the uterus demonstrates the ability of male bone marrow, which cannot harbor circulating endometrial cells, to generate endometrium de novo and proves their mesenchymal stem cell origin. Finding Y chromosome bearing endometrial cells demonstrates the potential to recapitulate embryonic developmental pathways that were never activated in males; BMDCs may have vast regenerative capacity. Additionally, the ability of stem cells to engraft endometriosis has implications for the origin and progression of this disease. Ectopic differentiation of stem cells may be a novel mechanism of disease. Disclosure of potential conflicts of interest is found at the end of this article.
机译:骨髓来源的细胞(BMDC)可以分化为非造血细胞,这表明BMDC可能有助于维持多个组织。在人子宫内膜中已鉴定出源自供体的骨髓细胞。在这里,两个小鼠模型被用来调查非子宫内膜干细胞对子宫内膜的贡献。我们调查BMDCs是否可以定位于子宫内膜和子宫内膜异位。骨髓移植后,在雌性小鼠的子宫内膜中发现了雄性供体来源的骨髓细胞。尽管不常见(<0.01%),但这些细胞可以分化为上皮细胞。通过腹膜腔内异位子宫内膜植入产生实验性子宫内膜异位后,将LacZ转基因小鼠的骨髓用于移植。 LacZ表达细胞是在植入子宫切除的LacZ转基因小鼠腹腔中的野生型异位子宫内膜中发现的。骨髓来源的干细胞使子宫内膜重新聚集对于正常的子宫内膜生理可能很重要,也可能有助于解释保守替代子宫切除术长期失败的细胞基础。对子宫等性二态器官的检查表明,雄性骨髓不能容纳循环的子宫内膜细胞,可以产生新生子宫内膜,并证明其是间充质干细胞来源。发现带有Y染色体的子宫内膜细胞表明有可能概括雄性从未激活的胚胎发育途径。 BMDC可能具有巨大的再生能力。另外,干细胞移植子宫内膜异位症的能力对这种疾病的起源和发展具有影响。干细胞的异位分化可能是疾病的新机制。在本文的末尾发现了潜在的利益冲突。

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