Age-related alterations in mesenchymal stem cells related to shift in differentiation from osteogenic to adipogenic potential: Implication to age-associated bone diseases and defects

被引:220
作者
Kim, MiJung [1 ,2 ,3 ,4 ,5 ,6 ]
Kim, ChanWha [5 ]
Choi, Yu Suk [4 ]
Kim, MinHwan [4 ]
Park, ChanJeoung [3 ]
Suh, Yousin [1 ,2 ,6 ]
机构
[1] Albert Einstein Coll Med, Dept Genet, Bronx, NY 10461 USA
[2] Albert Einstein Coll Med, Dept Med, Bronx, NY 10461 USA
[3] Univ Ulsan, Coll Med, Dept Lab Med, Seoul, South Korea
[4] Asan Inst Life Sci, Seoul, South Korea
[5] Korea Univ, Sch Life Sci & Biotechnol, Seoul, South Korea
[6] Albert Einstein Coll Med, Diabet Res & Training Ctr, Inst Aging Res, Bronx, NY 10461 USA
关键词
Mesenchymal stem cells (MSC); Aging; Adipogenesis; Osteogenesis; Cell therapy; MARROW STROMAL CELLS; LIFE-SPAN; OSTEOBLAST DIFFERENTIATION; PROTEOMIC ANALYSIS; OXIDATIVE STRESS; DOWN-REGULATION; TRANSCRIPTION FACTORS; TELOMERASE ACTIVITY; SIGNALING PATHWAYS; GENE-EXPRESSION;
D O I
10.1016/j.mad.2012.03.014
中图分类号
Q2 [细胞生物学];
学科分类号
071013 [干细胞生物学];
摘要
Mesenchymal stem cells (MSC) have attracted considerable attention in the fields of cell and gene therapy due to their intrinsic ability to differentiate into multiple lineages. The variou s therapeutic applications involving MSC require initial expansion and/or differentiation in vitro prior to clinical use. However, serial passages of MSC in culture lead to decreased differentiation potential and stein cell characteristics, eventually inducing cellular aging which will limit the success of cell-based therapeutic interventions. Here we review the age-related changes that occur in MSC with a special focus on the shift of differentiation potential from osteogenic to adipogenic lineage during the MSC aging processes and how aging causes this preferential shift by oxidative stress and/or energy metabolism defect. Oxidative stress-related signals and some microRNAs affect the differentiation potential shift of MSC by directly targeting key regulatory factors such as Runx-2 or PPAR-gamma, and energy metabolism pathway is involved as well. All information described here including transcription factors, microRNAs and FoxOs could be used towards development of treatment regimens for age-related bone diseases and related defects based on mutually exclusive lineage fate determination of MSC. (C) 2012 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:215 / 225
页数:11
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