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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Immortalization and characterization of bone marrow stromal fibroblasts from a patient with a loss of function mutation in the estrogen receptor-alpha gene.
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Immortalization and characterization of bone marrow stromal fibroblasts from a patient with a loss of function mutation in the estrogen receptor-alpha gene.

机译:雌激素受体-α基因功能缺失突变患者骨髓基质成纤维细胞的永生化和表征。

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摘要

A male patient with abnormal postpubertal bone elongation was shown earlier to have a mutation in both alleles of the estrogen receptor, resulting in a nonfunctional gene. Marrow stromal fibroblasts (MSFs) derived from this patient were called HERKOs (human estrogen receptor knock outs), and in order to obtain continuous HERKO cell lines, they were immortalized using a recombinant adenovirus-origin-minus SV40 virus. MSFs are unique cells because they support hematopoesis and contain a mixed population of precursor cells for bone, cartilage, and fat. Three established cell lines (HERKO2, HERKO4, and HERKO7) were characterized and compared with the heterogeneous population of nonimmortalized HERKOs for their osteogenic potential. We performed Northern analysis of matrix genes implicated in bone development and metabolism and an in vivo bone formation assay by transplanting the cells subcutaneously into immunodeficient mice. All three HERKO lines expressed high amounts of collagen 1A1, osteopontin, osteonectin, fibronectin, decorin, biglycan, and alkaline phosphatase. Except for osteopontin, expression of these genes was slightly lower compared with nonimmortalized HERKOs. In the in vivo bone formation assay, the heterogeneous population of nonimmortalized HERKOs formed bone with high efficiency, while the HERKO lines induced a high-density, bone-like matrix. Finally, all HERKO cell types secreted high levels of insulin-like growth factor I and interleukin-6 into the culture medium relative to cells of normal human subjects. In summary, these lines of HERKO cells retain several of the phenotypic traits of MSFs after immortalization, including matrix and cytokine production, and provide a valuable source of a unique human material for future studies involving estrogen action in bone and bone marrow metabolism.
机译:较早的男性患者,青春期后骨伸长异常,在雌激素受体的两个等位基因中都有突变,导致基因功能异常。源自该患者的骨髓基质成纤维细胞(MSF)被称为HERKO(人类雌激素受体敲除),为了获得连续的HERKO细胞系,使用重组腺病毒起源减SV40病毒使其永生化。 MSF是独特的细胞,因为它们支持造血作用,并且包含骨,软骨和脂肪的混合前体细胞。对三种已建立的细胞系(HERKO2,HERKO4和HERKO7)进行了表征,并与非永生化HERKO的异质群体进行了比较,了解它们的成骨潜力。我们通过将细胞皮下移植到免疫缺陷小鼠中,对涉及骨骼发育和代谢的基质基因进行了Northern分析,并进行了体内骨骼形成测定。这三个HERKO品系均表达大量胶原1A1,骨桥蛋白,骨连接蛋白,纤连蛋白,核心蛋白聚糖,双糖链蛋白聚糖和碱性磷酸酶。除骨桥蛋白外,与永生化的HERKO相比,这些基因的表达略低。在体内的骨形成试验中,非永生化的HERKO的异质群体高效形成了骨骼,而HERKO系诱导了高密度的骨样基质。最后,相对于正常人的细胞,所有HERKO细胞类型都向培养基中分泌了高水平的胰岛素样生长因子I和白介素6。总之,这些HERKO细胞系在永生化后保留了MSF的一些表型特征,包括基质和细胞因子的产生,并为今后涉及骨骼和骨髓代谢中雌激素作用的研究提供了独特的人类材料的宝贵来源。

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