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Comparative study of the biological characteristics of mesenchymal stem cells from bone marrow and peripheral blood of rats

机译:大鼠骨髓和外周血间充质干细胞生物学特性的比较研究

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Mesenchymal stem cells (MSCs) from adult exhibit self-renewal and multilineage differentiation capacities, making the MSCs promising candidates for cell therapy and tissue engineering. Although bone marrow (BM) is the most universal source of MSCs, other tissues may also contain MSCs. Peripheral blood (PB), in particular, arises as the most attractive source of MSCs due to easy accessibility and noninvasive procedure. However, it is not certain that PB-MSCs have the equal biological characteristics to those of BM-MSCs. The purpose of this study was to compare the biological characteristics between BM-MSCs and PB-MSCs. We adopted granulocyte colony-stimulating factor combined with CXCR4 antagonist AMD3100 to stimulate MSCs to release into blood circulation of the rats. PB-MSCs were obtained from mobilized PB and expanded in long-term culture. BM-MSCs were isolated from the femur and tibia medullary canal of the same rats by density gradient centrifugation. After cell expansion in vitro, cell surface markers and multipotentiality analysis were performed to identify MSCs. Apoptosis resistance to H 2O 2-induced apoptosis, proliferation kinetics, cellular senescence, and karyotype analysis were measured to compare the biological characteristics of PB-MSCs and BM-MSCs. PB-MSCs with the typical adherent fibroblast-like morphology were similar to that of BM-MSCs. Both PB-MSCs and BM-MSCs were positive for CD44 and CD90, and negative for CD34 and CD45. They both exhibited trilineage differentiation potential and expressed lineage-specific genes. Although the BM-MSCs showed stronger osteogenic and adipogenic differentiation, PB-MSCs displayed a more chondrogenic capacity. Further, BM-MSCs have greater proliferation ability. Apoptosis resistance and cellular senescence were similar in MSCs derived from both sources. The results of our study demonstrate that PB-MSCs have similar biological characteristics to those of BM-MSCs despite certain minor differences, suggesting PB as a possible alternative source for MSCs.
机译:成年的间充质干细胞(MSC)具有自我更新和多系分化的能力,这使MSC有望成为细胞疗法和组织工程的候选者。尽管骨髓(BM)是最普遍的MSC来源,但其他组织也可能包含MSC。尤其是,由于易于获取和无创操作,外周血(PB)成为MSC最吸引人的来源。然而,不能确定PB-MSC具有与BM-MSC相同的生物学特性。本研究的目的是比较BM-MSC和PB-MSC之间的生物学特性。我们采用粒细胞集落刺激因子结合CXCR4拮抗剂AMD3100刺激MSCs释放到大鼠的血液循环中。 PB-MSC获自动员的PB,并在长期培养中扩增。通过密度梯度离心从相同大鼠的股骨和胫骨髓管中分离出BM-MSC。体外细胞扩增后,进行细胞表面标记和多潜能分析以鉴定MSC。测量对H 2 O 2诱导的凋亡的凋亡抗性,增殖动力学,细胞衰老和核型分析,以比较PB-MSC和BM-MSC的生物学特性。具有典型的成纤维样粘附形态的PB-MSC与BM-MSC相似。 PB-MSC和BM-MSC的CD44和CD90均为阳性,而CD34和CD45均为阴性。它们都显示出三系分化潜能并表达了谱系特异性基因。尽管BM-MSCs显示出更强的成骨和成脂分化能力,但PB-MSCs显示出更大的软骨形成能力。此外,BM-MSC具有更大的增殖能力。两种来源的MSC中的凋亡抗性和细胞衰老相似。我们的研究结果表明,PB-MSC具有与BM-MSC相似的生物学特性,尽管存在一些细微的差异,这表明PB作为MSC的可能替代来源。

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