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Effects of cryopreservation and long-term culture on biological characteristics and proteomic profiles of human umbilical cord-derived mesenchymal stem cells

机译:冷冻保存和长期培养对人脐带间充质干细胞生物学特性和蛋白质组学谱的影响

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Human umbilical cord-derived MSCs (hUC-MSCs) have been identified as promising seeding cells in tissue engineering and clinical applications of regenerative medicine due to their advantages of simple acquisition procedure and the capability to come from a young tissue donor over the other MSCs sources. In clinical applications, large scale production is required and optimal cryopreservation and culture conditions are essential to autologous and allogeneic transplantation in the future. However, the influence of cryopreserved post-thaw and long-term culture on hUC-MSCs remains unknown, especially in terms of specific protein expression. Therefore, biological characteristics and proteomic profiles of hUC-MSCs after cryopreserving and long-term culturing were investigated. Firstly, hUC-MSCs were isolated from human umbilical cord tissues and identified through morphology, surface markers and tri-lineage differentiation potential at passage 3, and then the biological characteristics and proteomic profiles were detected and compared after cryopreserving and long-term culturing at passage 4 and continuously cultured to passage 10 with detection occurring here as well. The proteomic profiles were tested by using the isobaric tags for relative and absolute quantification (iTRAQ) labeling technique and differential protein were confirmed by mass spectrometry. The results showed no significant differences in phenotypes including morphology, surface marker and tri-lineage differentiation potential but have obvious changes in translation level, which is involved in metabolism, cell cycle and other pathways. This suggests that protein expression may be used as an indicator of hUC-MSCs security testing before applying in clinical settings, and it is also expected to provide the foundation or standardization guide of hUC-MSCs applications in regenerative medicine.
机译:已经鉴定了人脐带衍生的MSCs(HUC-MSCs)在组织工程和再生药物的临床应用中被鉴定为具有较简单的采集程序的优点以及来自其他MSCS来源的年轻组织供体的能力。在临床应用中,需要大规模的生产,并且未来对自体和同种异体移植至关重要,优化的冷冻保存和培养条件是必不可少的。然而,冷冻保存后解冻后和长期培养对HUC-MSCs的影响仍然是未知的,特别是在特定的蛋白质表达方面。因此,研究了冷冻保存和长期培养后HUC-MSCs的生物学特性和蛋白质组学谱。首先,HUC-MSCs从人脐带组织中分离,并通过第3段的形态,表面标记和三谱分化电位鉴定,然后检测生物特性和蛋白质组学曲线并在通道中冷冻保存和长期培养后进行比较4并在此处发生检测的通过10培养至通道10。通过使用用于相对和绝对定量的等异常(ITRAQ)标记技术和差异蛋白质通过质谱法确认蛋白质组学曲线。结果表明,表型没有显着差异,包括形态,表面标记和三谱分化潜力,但翻译水平变化明显,这参与了新陈代谢,细胞周期和其他途径。这表明在临床环境中施用之前可以用作HUC-MSCS安全性测试的蛋白质表达,并且还预计在再生医学中提供HUC-MSCS应用的基础或标准化指南。

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