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间充质干细胞衰老的见解:抗氧化防御和肌动蛋白细胞骨架的参与

Insights into mesenchymal stem cell aging: involvement of antioxidant defense and actin cytoskeleton.

作者信息

Kasper Grit, Mao Lei, Geissler Sven, Draycheva Albena, Trippens Jessica, Kühnisch Jirko, Tschirschmann Miriam, Kaspar Katharina, Perka Carsten, Duda Georg N, Klose Joachim

机构信息

Julius Wolff Institute and Center for Musculoskeletal Surgery Berlin, Charité-Universitätsmedizin Berlin, Berlin, Germany.

出版信息

Stem Cells. 2009 Jun;27(6):1288-97. doi: 10.1002/stem.49.

Abstract

Progenitor cells such as mesenchymal stem cells (MSCs) have elicited great hopes for therapeutic augmentation of physiological regeneration processes, e.g., for bone fracture healing. However, regeneration potential decreases with age, which raises questions about the efficiency of autologous approaches in elderly patients. To elucidate the mechanisms and cellular consequences of aging, the functional and proteomic changes in MSCs derived from young and old Sprague-Dawley rats were studied concurrently. We demonstrate not only that MSC concentration in bone marrow declines with age but also that their function is altered, especially their migratory capacity and susceptibility toward senescence. High-resolution two-dimensional electrophoresis of the MSC proteome, under conditions of in vitro self-renewal as well as osteogenic stimulation, identified several age-dependent proteins, including members of the calponin protein family as well as galectin-3. Functional annotation clustering revealed that age-affected molecular functions are associated with cytoskeleton organization and antioxidant defense. These proteome screening results are supported by lower actin turnover and diminished antioxidant power in aged MSCs, respectively. Thus, we postulate two main reasons for the compromised cellular function of aged MSCs: (a) declined responsiveness to biological and mechanical signals due to a less dynamic actin cytoskeleton and (b) increased oxidative stress exposure favoring macromolecular damage and senescence. These results, along with the observed similar differentiation potentials, imply that MSC-based therapeutic approaches for the elderly should focus on attracting the cells to the site of injury and oxidative stress protection, rather than merely stimulating differentiation.

摘要

诸如间充质干细胞(MSCs)之类的祖细胞已为生理性再生过程(例如骨折愈合)的治疗增强带来了巨大希望。然而,再生潜力会随着年龄增长而下降,这引发了关于老年患者自体治疗方法效率的问题。为了阐明衰老的机制和细胞后果,我们同时研究了来自年轻和老年斯普拉格-道利大鼠的间充质干细胞的功能和蛋白质组学变化。我们不仅证明了骨髓中间充质干细胞的浓度会随着年龄下降,还证明了它们的功能发生了改变,尤其是它们的迁移能力和对衰老的易感性。在体外自我更新以及成骨刺激条件下,对间充质干细胞蛋白质组进行高分辨率二维电泳,鉴定出了几种与年龄相关的蛋白质,包括钙调蛋白家族成员以及半乳凝素-3。功能注释聚类显示,受年龄影响的分子功能与细胞骨架组织和抗氧化防御有关。这些蛋白质组筛选结果分别得到了老年间充质干细胞中较低的肌动蛋白周转率和降低的抗氧化能力的支持。因此,我们推测老年间充质干细胞细胞功能受损的两个主要原因:(a)由于肌动蛋白细胞骨架动态性降低,对生物和机械信号的反应性下降;(b)氧化应激暴露增加,有利于大分子损伤和衰老。这些结果,连同观察到的相似分化潜能,意味着针对老年人的基于间充质干细胞的治疗方法应侧重于将细胞吸引到损伤部位并进行氧化应激保护,而不仅仅是刺激分化。

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