CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The Evaluation of Mass/DNA Copy Number of Mitochondria in Umbilical Cord Blood-derived Hematopoietic Stem Cells Cocultured with MSCs.
The Evaluation of Mass/DNA Copy Number of Mitochondria in Umbilical Cord Blood-derived Hematopoietic Stem Cells Cocultured with MSCs.
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近几十年来,脐带血(UCB)已被广泛用作造血干细胞(HSC)的优良替代来源,以治疗多种血液系统疾病。近期研究提示,在移植前与间充质基质细胞共培养可增加HSC数量。考虑到线粒体对细胞命运的关键作用,以及HSC自我更新能力对造血干细胞移植(HSCT)的重要性,我们决定研究HSC单独培养或与间充质基质细胞(MSC)共培养7天后的线粒体质量和线粒体DNA拷贝数。UCB样本采自足月分娩。
我们从UCB中分离MSC和HSC,并通过流式细胞术确认细胞纯度。采用基于探针的实时PCR计算HSC线粒体DNA(mtDNA)拷贝数,并使用MitoTracker Green染料测定HSC线粒体质量。培养7天后,与单独培养的HSC相比,MSC共培养组HSC的mtDNA拷贝数显著较低(p<0.001)。
此外,将两组第7天结果与HSC第0天相比,单独培养的HSC线粒体质量较MSC-HSC共培养组略有增加(p<0.05)。既往研究已证明,CD34+ HSC中线粒体质量或DNA拷贝数较低,与代谢活性较低及更能维持静息状态相关。结合本实验结果,MSC-HSC共培养似乎可能促进HSC扩增并维持其干性,从而改善植入。
然而,仍需进一步研究以阐明线粒体质量或DNA拷贝数降低与HSC干性维持之间的确切联系。
Over recent decades, UCB has been widely used as an excellent alternative source of HSCs for treating many hematologic disorders. Recent studies suggest using mesenchymal stroma cell co-cultures to increase the number of HSCs prior to transplantation.
Considering the critical role of mitochondria in the cell's fate and the importance of the self-renewal capacity of HSCs in HSCT, we decided to investigate the mass/DNA copy number of mitochondria in HSCs while co-cultured with MSCs and alone after seven days. UCB units were collected from full-term deliveries. MSCs and HSCs were isolated from UCB and the purity of cells was confirmed by flow cytometry. The mtDNA-Copy Number of HSCs was calculated using prob-based real-time PCR.
Furthermore, Mito Tracker Green dye measured the mass of mitochondria of HSCs. HSCs from MSC co-culture group showed significantly fewer mtDNA-CN compared to HSCs alone after seven days (p < 0. 001). Besides, by comparing the two groups on day seven to HSCs on day zero, we observed a mild increase in the mitochondrial mass of HSCs alone compared to the MSC-HSC co-culture group (p < 0. 05).
Concerning previous studies that have proved the association between lower mass/DNA-copy number of mitochondria in CD34 + HSCs and lower metabolic activity along with higher quiescence maintenance, and by considering the results of this experiment, it seems that the MSC-HSC co-cultures might be associated with a higher expansion of HSCs as well as stemness maintenance leading to the improvement in engraftment.
Nevertheless, further investigations are required to clarify the exact connection between lower mass/DNA-copy number of mitochondria and stemness maintenance in HSCs.
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