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首页> 外文期刊>Tissue engineering, Part A >Biological characteristics of human-urine-derived stem cells: Potential for cell-based therapy in neurology
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Biological characteristics of human-urine-derived stem cells: Potential for cell-based therapy in neurology

机译:人尿源性干细胞的生物学特性:神经学中基于细胞的治疗的潜力

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Stem cells in human urine have gained attention in recent years; however, urine-derived stem cells (USCs) are far from being well elucidated. In this study, we compared the biological characteristics of USCs with adipose-derived stem cells (ASCs) and investigated whether USCs could serve as a potential cell source for neural tissue engineering. USCs were isolated from voided urine with a modified culture medium. Through a series of experiments, we examined the growth rate, surface antigens, and differentiation potential of USCs, and compared them with ASCs. USCs showed robust proliferation ability. After serial propagation, USCs retained normal karyotypes. Cell surface antigen expression of USCs was similar to ASCs. With lineage-specific induction factors, USCs could differentiate toward the osteogenic, chondrogenic, adipogenic, and neurogenic lineages. To assess the ability of USCs to survive, differentiate, and migrate, they were seeded onto hydrogel scaffold and transplanted into rat brain. The results showed that USCs were able to survive in the lesion site, migrate to other areas, and express proteins that were associated with neural phenotypes. The results of our study demonstrate that USCs possess similar biological characteristics with ASCs and have multilineage differentiation potential. Moreover USCs can differentiate to neuron-like cells in rat brain. The present study shows that USCs are a promising cell source for tissue engineering and regenerative medicine.
机译:近年来,人类尿液中的干细胞受到关注。然而,尿源性干细胞(USC)远未得到很好的阐明。在这项研究中,我们比较了USC与脂肪干细胞(ASC)的生物学特性,并研究了USC是否可以作为神经组织工程的潜在细胞来源。使用改良的培养基从尿液中分离出USC。通过一系列实验,我们检查了USC的生长速率,表面抗原和分化潜能,并将其与ASC进行了比较。 USC显示出强大的增殖能力。在连续繁殖后,USC保留了正常的核型。 USC的细胞表面抗原表达与ASC相似。借助谱系特异性诱导因子,USC可以向成骨,成软骨,成脂和神经源谱系分化。为了评估USC存活,分化和迁移的能力,将它们接种到水凝胶支架上,然后移植到大鼠脑中。结果表明,USC能够在病变部位存活,迁移到其他区域并表达与神经表型相关的蛋白质。我们的研究结果表明,USC具有与ASC相似的生物学特性,并且具有多系分化潜能。此外,USC可以在大鼠脑中分化为神经元样细胞。本研究表明,USC是用于组织工程和再生医学的有希望的细胞来源。

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