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分子细胞遗传学揭示了人类脐静脉内皮细胞中的嵌合体现象。

Molecular Cytogenetics Reveals Mosaicism in Human Umbilical Vein Endothelial Cells.

机构信息

Division of Radiation Health, Department of Pharmaceutical Sciences, College of Pharmacy, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.

出版信息

Genes (Basel). 2022 Jun 3;13(6):1012. doi: 10.3390/genes13061012.

Abstract

Primary human umbilical vein endothelial cells (HUVECs) are consistently the most reliable in vitro model system for studying the inner lining of blood and lymphatic vessels or the endothelium. Primary human cells originate from freshly isolated tissues without genetic manipulation and generally show a modal number of 46 chromosomes with no structural alterations, at least during early passages. We investigated the cytogenetic integrity of HUVECs with conventional (G-banding) and molecular cytogenetic methods (spectral karyotyping (SKY) and fluorescence in situ hybridization (FISH)). Our G-band data shows two X-chromosomes, confirming these HUVECs originate from a female donor. Notably, some cells consistently exhibit an unfamiliar banding pattern on one X chromosome toward the distal end of the long arm (Xq). Our FISH analysis confirms that approximately 50% of these HUVECs have a deletion of the Xq terminal region. SKY analysis indicates that the deleted region is apparently not integrated into any other chromosome. Finally, we demonstrated the presence of a similar Xq deletion in the daughter cell line, EA.hy926, which was generated by fusing HUVECs with A549 (a thioguanine-resistant clone of adenocarcinomic human alveolar basal epithelial cells). These findings will advance comprehension of HUVECs biology and will augment future endothelial studies.

摘要

原代人脐静脉内皮细胞(HUVEC)是研究血液和淋巴管内层或内皮的最可靠的体外模型系统。原代人细胞源自新鲜分离的组织,未经基因操作,通常具有模式数为 46 条染色体,且结构没有改变,至少在早期传代中没有改变。我们使用常规(G 带)和分子细胞遗传学方法(光谱核型分析(SKY)和荧光原位杂交(FISH))研究了 HUVEC 的细胞遗传学完整性。我们的 G 带数据显示有两条 X 染色体,证实这些 HUVEC 源自女性供体。值得注意的是,一些细胞在 X 染色体长臂(Xq)的远端始终表现出不熟悉的带型模式。我们的 FISH 分析证实,大约 50%的这些 HUVEC 具有 Xq 末端区域的缺失。SKY 分析表明,缺失区域显然未整合到任何其他染色体中。最后,我们证明了在子细胞系 EA.hy926 中存在类似的 Xq 缺失,该细胞系是通过融合 HUVEC 和 A549(人肺泡基底上皮细胞的硫鸟嘌呤抗性克隆)产生的。这些发现将促进对 HUVEC 生物学的理解,并增强未来的内皮研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1400/9222953/752b0773e90e/genes-13-01012-g001.jpg

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