首页> 外文期刊>Stem cell reviews and Reports >Alkaline Phosphatase Expression/Activity and Multilineage Differentiation Potential are the Differences Between Fibroblasts and Orbital Fat-Derived Stem Cells – A Study in Animal Serum-Free Culture Conditions
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Alkaline Phosphatase Expression/Activity and Multilineage Differentiation Potential are the Differences Between Fibroblasts and Orbital Fat-Derived Stem Cells – A Study in Animal Serum-Free Culture Conditions

机译:碱性磷酸酶的表达/活性和多系分化潜能是成纤维细胞与脂肪衍生的干细胞之间的差异–在无血清培养条件下的研究

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摘要

Human orbital fat tissues are a potential source to isolate stem cells for the development of regenerative medicine therapies. For future safe clinical application of these cells, it is critical to establish animal component-free culture conditions as well as to clearly define the stem cell population characteristics differentiating them from other cell types, such as fibroblasts. Therefore, the present study aimed to compare phenotypic and functional characteristics of orbital fat-derived stem cells (OFSCs) and fibroblasts resident in the eyelid skin in donor-matched samples grown in culture medium supplemented with pooled allogeneic human serum (HS) replacing fetal bovine serum (FBS). We first investigated the proliferative effects of OFSCs on HS, and then we compared the alkaline phosphatase (AP) expression and activity, immunophenotypic profile, and in vitro multilineage differentiation potential of OFSCs side-by-side with fibroblasts. The results showed that HS enhanced OFSCs proliferation without compromising their immunophenotype, AP activity, and osteogenic, adipogenic, and chondrogenic differentiation capacities. In contrast to OFSCs, the fibroblasts did not exhibit AP expression and activity and did not have multilineage differentiation potential. The results enabled us to successfully distinguish OFSCs from fibroblasts populations, suggesting that AP expression/activity and multilineage differentiation assays can be used reliably to discriminate mesenchymal stem cells from fibroblasts. Our findings also support the feasibility of pooled allogeneic HS as a safer and more effective alternative to FBS for clinical applications.
机译:人眼眶脂肪组织是分离干细胞以开发再生医学疗法的潜在来源。对于这些细胞的未来安全临床应用,至关重要的是建立无动物成分的培养条件,并明确定义干细胞种群特征,使其与其他细胞类型(例如成纤维细胞)区分开。因此,本研究旨在比较在补充混合同种异体人血清(HS)的培养基中培养的供体匹配样本中,眼睑皮肤中定居于眼睑皮肤的眼眶皮肤脂肪源性干细胞(OFSCs)和成纤维细胞的表型和功能特征血清(FBS)。我们首先研究了OFSCs对HS的增殖作用,然后比较了OFSCs与成纤维细胞的碱性磷酸酶(AP)表达和活性,免疫表型谱以及体外多系分化潜能。结果表明,HS增强了OFSC的增殖,而没有损害它们的免疫表型,AP活性以及成骨,成脂和成软骨分化能力。与OFSC相比,成纤维细胞不显示AP表达和活性,也不具有多谱​​系分化潜能。结果使我们能够成功地将OFSCs与成纤维细胞群体区分开,表明AP表达/活性和多谱系分化测定法可以可靠地用于区分成纤维细胞的间充质干细胞。我们的发现还支持将同种异体HS作为临床应用中FBS的更安全,更有效的替代方案的可行性。

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