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Comparative Evaluation of Human Mesenchymal Stem Cells of Fetal (Wharton's Jelly) and Adult (Adipose Tissue) Origin during Prolonged In Vitro Expansion: Considerations for Cytotherapy

机译:胎儿(沃顿氏胶)和成人(脂肪组织)来源的人间充质干细胞在延长体外扩增过程中的比较评价:细胞疗法的考虑

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摘要

Mesenchymal stem cells (MSCs) are somatic cells with a dual capacity for self-renewal and differentiation, and diverse therapeutic applicability, both experimentally and in the clinic. These cells can be isolated from various human tissues that may differ anatomically or developmentally with relative ease. Heterogeneity due to biological origin or in vitro manipulation is, nevertheless, considerable and may equate to differences in qualitative and quantitative characteristics which can prove crucial for successful therapeutic use. With this in mind, in the present study we have evaluated the proliferation kinetics and phenotypic characteristics of MSCs derived from two abundant sources, that is, fetal umbilical cord matrix (Whartons jelly) and adult adipose tissue (termed WJSC and ADSC, resp.) during prolonged in vitro expansion, a process necessary for obtaining cell numbers sufficient for clinical application. Our results show that WJSC are derived with relatively high efficiency and bear a substantially increased proliferation capacity whilst largely sustaining the expression of typical immunophenotypic markers, whereas ADSC exhibit a reduced proliferation potential showing typical signs of senescence at an early stage. By combining kinetic with phenotypic data we identify culture thresholds up to which both cell types maintain their stem properties, and we discuss the practical implications of their differences.
机译:间充质干细胞(MSCs)是一种具有自我更新和分化双重能力的体细胞,无论在实验上还是在临床上都具有多种治疗应用性。这些细胞可以从各种人体组织中分离出来,这些人体组织在解剖学或发育上都相对容易。但是,由于生物学原因或体外操作引起的异质性相当大,可能等同于定性和定量特性的差异,这对于成功的治疗用途至关重要。考虑到这一点,在本研究中,我们评估了来源于两种丰富来源的MSC的增殖动力学和表型特征,这两种来源是胎儿脐带基质(沃顿氏果冻)和成年脂肪组织(分别称为WJSC和ADSC)。在延长的体外扩增过程中,这是获得足以用于临床的细胞数量所必需的过程。我们的结果表明,WJSC的衍生效率相对较高,并具有显着提高的增殖能力,同时在很大程度上维持了典型的免疫表型标记的表达,而ADSC的增殖潜力却降低了,并在早期显示出典型的衰老迹象。通过将动力学数据与表型数据结合起来,我们确定了两种细胞类型都能维持其干细胞特性的培养阈值,并讨论了它们之间差异的实际含义。

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