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Functional Comparison of Chronological and In Vitro Aging: Differential Role of the Cytoskeleton and Mitochondria in Mesenchymal Stromal Cells

机译:时序和体外老化的功能比较:间充质基质细胞中细胞骨架和线粒体的差异作用。

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摘要

Mesenchymal stromal cells (MSCs) are of high relevance for the regeneration of mesenchymal tissues such as bone and cartilage. The promising role of MSCs in cell-based therapies and tissue engineering appears to be limited due to a decline of their regenerative potential with increasing donor age, their limited availability in human tissues and the need of in vitro expansion prior to treatment. We therefore aimed to determine to which degree in vitro aging and chronological aging may be similar processes or if in vitro culture-related changes at the cellular and molecular level are at least altered as a function of donor age. For that purpose we established MSCs cultures from young (yMSCs) and aged (aMSCs) rats that were cultured for more than 100 passages. These long-term MSCs cultures were non-tumorigenic and exhibited similar surface marker patterns as primary MSCs of passage 2. During in vitro expansion, but not during chronological aging, MSCs progressively lose their progenitor characteristics, e.g., complete loss of osteogenic differentiation potential, diminished adipogenic differentiation, altered cell morphology and increased susceptibility towards senescence. Transcriptome analysis revealed that long-term in vitro MSCs cultivation leads to down-regulation of genes involved in cell differentiation, focal adhesion organization, cytoskeleton turnover and mitochondria function. Accordingly, functional analysis demonstrated altered mitochondrial morphology, decreased antioxidant capacities and elevated ROS levels in long-term cultivated yMSCs as well as aMSCs. Notably, only the MSC migration potential and their antioxidative capacity were altered by in vitro as well as chronological aging. Based on specific differences observed between the impact of chronological and in vitro MSC aging we conclude that both are distinct processes.
机译:间充质基质细胞(MSC)与间充质组织(如骨骼和软骨)的再生具有高度相关性。 MSC在基于细胞的治疗和组织工程中的有前途的作用似乎受到限制,这是由于随着供体年龄的增加,它们的再生潜力下降,在人体组织中的可用性有限以及需要在治疗前进行体外扩增。因此,我们旨在确定体外衰老和按时间顺序进行老化的程度可能与相似的过程,或者至少在细胞和分子水平上与体外培养相关的变化是否随供体年龄而变化。为此,我们从年轻(yMSCs)和老年(aMSCs)大鼠中建立了MSCs培养物,并进行了100多代的培养。这些长期的MSCs培养物不是致瘤性的,并且表现出与第2代主要MSCs相似的表面标记。在体外扩增过程中,但在按时间顺序进行的老化过程中,MSCs逐渐丧失了其祖细胞特性,例如,完全丧失了成骨分化潜能,减少了成脂分化,改变了细胞形态并增加了对衰老的敏感性。转录组分析显示,长期的体外MSC培养可导致参与细胞分化,粘着组织,细胞骨架更新和线粒体功能的基因下调。因此,功能分析表明,长期培养的yMSCs和aMSCs的线粒体形态发生了变化,抗氧化能力降低,ROS水平升高。值得注意的是,只有MSC迁移潜力及其抗氧化能力被体外以及按时间顺序的老化所改变。根据在时间和体外MSC老化影响之间观察到的特定差异,我们得出结论,两者都是不同的过程。

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