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人类骨髓间充质干细胞(BMSC)复制性衰老的个体内变异性:与BMSC衰老相关的分子变化。

Intra-subject variability in human bone marrow stromal cell (BMSC) replicative senescence: molecular changes associated with BMSC senescence.

作者信息

Ren Jiaqiang, Stroncek David F, Zhao Yingdong, Jin Ping, Castiello Luciano, Civini Sara, Wang Huan, Feng Ji, Tran Katherine, Kuznetsov Sergei A, Robey Pamela G, Sabatino Marianna

机构信息

Department of Transfusion Medicine, Clinical Center, National Institutes of Health, 10 Center Dr., Bethesda, MD 20892, USA.

出版信息

Stem Cell Res. 2013 Nov;11(3):1060-73. doi: 10.1016/j.scr.2013.07.005. Epub 2013 Jul 27.

Abstract

The outcomes of clinical trials using bone marrow stromal cell (BMSC) are variable; the degree of the expansion of BMSCs during clinical manufacturing may contribute to this variability since cell expansion is limited by senescence. Human BMSCs from aspirates of healthy subjects were subcultured serially until cell growth stopped. Phenotype and functional measurements of BMSCs from two subjects including senescence-associated beta-galactosidase staining and colony formation efficiency changed from an early to a senescence pattern at passage 6 or 7. Transcriptome analysis of 10 early and 15 late passage BMSC samples from 5 subjects revealed 2122 differentially expressed genes, which were associated with immune response, development, and cell proliferation pathways. Analysis of 57 serial BMSC samples from 7 donors revealed that the change from an early to senescent profile was variable among subjects and occurred prior to changes in phenotypes. BMSC age expressed as a percentage of maximum population doublings (PDs) was a good indicator for an early or senescence transcription signature but this measure of BMSC life span can only be calculated after expanding BMSCs to senescence. In order to find a more useful surrogate measure of BMSC age, we used a computational biology approach to identify a set of genes whose expression at each passage would predict elapsed age of BMSCs. A total of 155 genes were highly correlated with BMSC age. A least angle regression algorithm identified a set of 24 BMSC age-predictive genes. In conclusion, the onset of senescence-associated molecular changes was variable and preceded changes in other indicators of BMSC quality and senescence. The 24 BMSC age predictive genes will be useful in assessing the quality of clinical BMSC products.

摘要

使用骨髓基质细胞(BMSC)的临床试验结果存在差异;临床生产过程中BMSC的扩增程度可能导致了这种差异,因为细胞扩增受衰老限制。对健康受试者抽吸物中的人BMSC进行连续传代培养,直至细胞生长停止。对两名受试者的BMSC进行表型和功能检测,包括衰老相关β-半乳糖苷酶染色和集落形成效率,结果显示在第6或第7代时从早期模式转变为衰老模式。对来自5名受试者的10个早期传代和15个晚期传代BMSC样本进行转录组分析,发现2122个差异表达基因,这些基因与免疫反应、发育和细胞增殖途径相关。对来自7名供体的57个连续传代BMSC样本进行分析,发现从早期到衰老状态的转变在不同受试者中存在差异,且发生在表型变化之前。以最大群体倍增数(PDs)的百分比表示的BMSC年龄是早期或衰老转录特征的良好指标,但这种BMSC寿命的衡量方法只能在将BMSC扩增至衰老后计算。为了找到更有用的BMSC年龄替代指标,我们采用计算生物学方法来识别一组基因,其在每次传代时的表达可预测BMSC的已过年龄。共有155个基因与BMSC年龄高度相关。最小角回归算法确定了一组24个BMSC年龄预测基因。总之,衰老相关分子变化的起始是可变的,且先于BMSC质量和衰老的其他指标变化。这24个BMSC年龄预测基因将有助于评估临床BMSC产品的质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0290/3818332/65b6e5c0c812/nihms508985f1.jpg

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