体外扩增脐带血cd34阳性造血干细胞DNA损伤与修复的评价

Mohammad Shokouhian, H. Mozdarani, M. Soleimani, M. Safa, M. Rezvany
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引用次数: 0

摘要

背景与目的:DNA单链和双链断裂损伤的发生是多种环境因素影响细胞增殖的主要障碍,如果不进行修复,可导致多种后果,包括突变、细胞死亡等。因此,本研究旨在评价干细胞增殖前后DNA损伤及DNA修复系统基因的表达状况。材料与方法:采用MACS法分离脐血造血干细胞(ucb - hsc)。采用流式细胞术对膜联蛋白V/PI进行了研究。Comet法对DNA断裂进行观察和鉴定,实时聚合酶链反应检测正常参与DNA断裂修复的基因表达。结果:增殖3天后,干细胞平均数量增加1.9倍。细胞的凋亡百分比可以忽略不计(小于0.2%),CD34+细胞的纯度在三天内降低了约三分之一(67%)。通过检测DNA修复基因KU70、KU80、RAD51和XRCC1的表达,它们的增加倍数变化不显著。在彗星试验中对干细胞进行显微镜检查,复制前(1.33%±0.31)与复制后(2.08%±0.92)的DNA损伤无显著差异。结论:在我们的研究中,没有观察到DNA损伤或DNA断裂修复的变化。然而,需要进一步的研究来通过招募更多的ucb - hsc样本来阐明DNA断裂修复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of DNA Damage and Repair In In Vitro Expanded Cord Blood CD 34 Positive Hematopoietic Stem Cell
Background and Aims: The occurrence of single and double-strand breaks of DNA damage is the major obstacle for proliferation under various environmental factors and, if not repaired, can result in many consequences, including mutation, cell death, and others. So, the present study was conducted to evaluate the damage of DNA and the expression status of DNA repair system genes before and after stem cell proliferation. Materials and Methods: The MACS method isolated the umbilical cord blood hematopoietic stem cells (UCB-HSCs). In order to investigate cell death, the study of Annexin V/PI was done by flow cytometry. Comet assay made observation and identification of DNA breaks, and the expression of genes normally involved in the repair of DNA breaks was evaluated by real-time polymerase chain reaction. Results: The average number of stem cells increased by 1.9-fold after three days of proliferation. The apoptotic percentage of cells was negligible (less than 0.2%), and the purity of the CD34+ cells was reduced by about one-third in three days (67%). By examining the expression of DNA repair genes, including KU70, KU80, RAD51, and XRCC1, their increased fold change was not significant. In a microscopic examination of stem cells in the comet assay, there was no significant difference between DNA damage before (1.33% ± 0.31) and after (2.08% ± 0.92) replication. Conclusion: In our investigation, neither DNA damage nor changes in the DNA break repair were observed. However, further studies are required to clarify the DNA break repair by recruiting more UCB-HSCs samples.
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