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氧化状态可预测人间充质干细胞的质量。

Oxidative status predicts quality in human mesenchymal stem cells.

作者信息

Bertolo Alessandro, Capossela Simona, Fränkl Gion, Baur Martin, Pötzel Tobias, Stoyanov Jivko

机构信息

Biomedical laboratories, Swiss Paraplegic Research, Nottwil, Switzerland.

Cantonal Hospital of Lucerne, Lucerne, Switzerland.

出版信息

Stem Cell Res Ther. 2017 Jan 6;8(1):3. doi: 10.1186/s13287-016-0452-7.

Abstract

BACKGROUND

Human bone marrow-derived mesenchymal stem cells (MSC) are adult progenitor cells with great potential for application in cell-based therapies. From a cell-based therapy perspective, there are two limitations to MSC use: (1) these therapies require large numbers of cells, and long-term expansion of MSC in vitro promotes replicative senescence; and (2) patient variability is a challenge for defining MSC quality standards for transplantation. This study aimed to determine whether low or high oxidative status of MSC correlate with changes in cell expansion and differentiation potentials.

METHODS

We investigated functional aspects of mitochondria, such as cell metabolic activity indicators and expression of antioxidant enzymes. Furthermore, we tested if senescence-induced changes in oxidative status of MSC could be counteracted by methylene blue (MB), an alternative mitochondrial electron transfer known to enhance cell bioenergetics.

RESULTS

MSC isolated from donors of the same age showed distinctive behavior in culture and were grouped as weak (low colony-forming units (CFU) and a short life in vitro) and vigorous MSC (high CFU and a long life in vitro). In comparison to weak MSC, vigorous MSC had oxidative status characterized by lower mitochondrial membrane potential, lower mitochondrial activity, and fewer reactive oxygen species production, as well as reduced mitochondrial biogenesis. Vigorous MSC had a significantly higher expansion potential compared to weak MSC, while no differences were observed during differentiation. MB treatment significantly improved expansion and differentiation potential, however only in vigorous MSC.

CONCLUSIONS

Together, these results demonstrate the importance of mitochondrial function in MSC in vitro, and that cells with low oxidative status levels are better candidates for cell-based therapies.

摘要

背景

人骨髓间充质干细胞(MSC)是成体祖细胞,在基于细胞的治疗中具有巨大的应用潜力。从基于细胞的治疗角度来看,MSC的使用存在两个局限性:(1)这些治疗需要大量细胞,而MSC在体外长期扩增会促进复制性衰老;(2)患者个体差异是确定移植用MSC质量标准的一个挑战。本研究旨在确定MSC的低氧化状态或高氧化状态是否与细胞扩增和分化潜能的变化相关。

方法

我们研究了线粒体的功能方面,如细胞代谢活性指标和抗氧化酶的表达。此外,我们测试了衰老诱导的MSC氧化状态变化是否可以被亚甲蓝(MB)抵消,亚甲蓝是一种已知可增强细胞生物能量学的替代性线粒体电子传递体。

结果

从同一年龄供体分离的MSC在培养中表现出不同的行为,并被分为弱(低集落形成单位(CFU)且体外寿命短)和强MSC(高CFU且体外寿命长)。与弱MSC相比,强MSC的氧化状态特征为线粒体膜电位较低、线粒体活性较低、活性氧产生较少以及线粒体生物发生减少。与弱MSC相比,强MSC具有显著更高的扩增潜能,而在分化过程中未观察到差异。MB处理显著改善了扩增和分化潜能,但仅在强MSC中有效。

结论

总之,这些结果证明了线粒体功能在体外MSC中的重要性,并且氧化状态水平低的细胞是基于细胞治疗的更好候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b83f/5217567/c7e40390bfad/13287_2016_452_Fig1_HTML.jpg

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