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The biological characteristics of different generation mesenchymal stem cells cultured in vitro and cocultured with vascular scaffold

机译:体外培养并与血管支架共培养的不同世代间充质干细胞的生物学特性

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Mesenchymal stem cells (MSCs) were used widely as seed cells in tissue engineering blood vessel construction. However, the biological characteristics difference of different generation MSCs in vitro culture is unknown, which laid a foundation for appropriate generation seeded cells selection for tissue engineering blood vessel construction. In this report, MSCs were isolated from SD rat bone marrow and identified by flow cytometry; cell growth curve test, cell surface antigen expression rate detection, cryopreservation resuscitation rate test, CD31 expression rate test, cell cycle analysis, and adhesion difference on vascular scaffold test were performed. The research results indicated that the MSCs shape was spindle and uniform with vigorous growth. CD105 and CD90 factor expression rate reached 82.5 and 84.9%, respectively, and the expression rate of CD45 was only 7.3%. The proliferation capacity of the fourth generation MSCs were more exuberant, with proliferation index as 20.3%; the cell proliferation index of the eighth generation decreased to only 9.1%. The cryopreservation resuscitation rate of the second generation and fourth generation MSCs were both higher than 80%, and the cryopreservation resuscitation rate of the eighth generation MSCs was only about 60%. After the induction for 5days, MSCs had weak CD31 expression, and with the prolonged induction time, expression increased. All generation MSCs expressed CD31 after being induced for 10days; however, the CD31 positive expression rate of the second generation, fourth generation, and sixth generation MSCs had significant difference with the eighth generation MSCs. Adhesion rate of MSCs before sixth generation was around 40%, but the adhesion rate of eighth generation MSCs was only about 27%. In all, biological characteristics of different generation MSCs existed certain differences, and especially the eighth generation MSCs aged seriously, whose cell activity decreased significantly. The researchers believed that the MSCs before the sixth generation can maintain excellent properties of MSCs, and can be used as seed cells for vascular tissue engineering.
机译:间充质干细胞(MSCs)被广泛用作组织工程血管构建中的种子细胞。然而,不同世代间充质干细胞体外培养的生物学特性差异尚不清楚,这为选择合适的世代种子细胞进行组织工程血管构建奠定了基础。在本报告中,从SD大鼠骨髓中分离出MSC,并通过流式细胞仪进行了鉴定。进行细胞生长曲线测试,细胞表面抗原表达率检测,冷冻保存复苏率测试,CD31表达率测试,细胞周期分析以及血管支架试验的粘附差异。研究结果表明,间充质干细胞的形状呈纺锤形,均一,生长旺盛。 CD105和CD90因子的表达率分别达到82.5和84.9%,而CD45的表达率仅为7.3%。第四代MSCs的增殖能力更强,增殖指数为20.3%。第八代的细胞增殖指数仅下降到9.1%。第二代和第四代MSC的冷冻保存复苏率均高于80%,而第八代MSC的冷冻保存复苏率仅为60%左右。诱导5天后,MSCs的CD31表达较弱,且随着诱导时间的延长,表达增加。诱导10天后,所有世代MSC均表达CD31。然而,第二代,第四代和第六代MSCs的CD31阳性表达率与第八代MSCs有显着差异。第六代之前的MSC的粘附率约为40%,而第八代MSC的粘附率仅为27%。总之,不同世代间充质干细胞的生物学特性存在一定差异,特别是第八代间充质干细胞严重老化,其细胞活性明显下降。研究人员认为,第六代之前的MSC可以保持MSC的优良性能,并可以用作血管组织工程的种子细胞。

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