Senescence in Human Mesenchymal Stem Cells: Functional Changes and Implications in Stem Cell-Based Therapy
Старение мезенхимальных стволовых клеток человека: функциональные изменения и значение для терапии на основе стволовых клеток
2016-07-19
SCID: 54.1/m5vsjn5h
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cellular senescenceex vivo cell expansionhuman mesenchymal stem cellssecretomestem cell-based therapy
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Abstract (AI)
Regenerative medicine is extensively interested in developing cell therapies using mesenchymal stem cells (MSCs), with applications to several aging-associated diseases. For successful therapies, a substantial number of cells are needed, requiring extensive ex vivo cell expansion. However, MSC proliferation is limited and it is quite likely that long-term culture evokes continuous changes in MSCs. Therefore, a substantial proportion of cells may undergo senescence. In the present review, we will first present the phenotypic characterization of senescent human MSCs (hMSCs) and their possible consequent functional alterations. The accumulation of oxidative stress and dysregulation of key differentiation regulatory factors determine decreased differentiation potential of senescent hMSCs. Senescent hMSCs also show a marked impairment in their migratory and homing ability. Finally, many factors present in the secretome of senescent hMSCs are able to exacerbate the inflammatory response at a systemic level, decreasing the immune modulation activity of hMSCs and promoting either proliferation or migration of cancer cells. Considering the deleterious effects that these changes could evoke, it would appear of primary importance to monitor the occurrence of senescent phenotype in clinically expanded hMSCs and to evaluate possible ways to prevent in vitro MSC senescence. An updated critical presentation of the possible strategies for in vitro senescence monitoring and prevention constitutes the second part of this review. Understanding the mechanisms that drive toward hMSC growth arrest and evaluating how to counteract these for preserving a functional stem cell pool is of fundamental importance for the development of efficient cell-based therapeutic approaches.
Key Findings
1
Clinical expansion should include senescence monitoring and preventive strategies to preserve a functional MSC pool for effective cell-based therapies.
2
Extensive ex vivo expansion can induce senescence in human mesenchymal stem cells, potentially compromising clinically relevant cell preparations.
3
Oxidative stress accumulation and dysregulation of differentiation regulators reduce the differentiation potential of senescent human MSCs.
4
Senescent human MSCs exhibit markedly impaired migration and homing abilities, limiting their therapeutic delivery and tissue-targeting capacity.
5
The senescent MSC secretome can amplify systemic inflammation, weaken immunomodulatory activity, and promote cancer-cell proliferation or migration.
Research Object
senescent human mesenchymal stem cells (hMSCs) during ex vivo expansion for cell-based therapy
Research Subject
phenotypic and functional alterations caused by senescence, including impaired differentiation, migration, homing, and immunomodulation, along with strategies for monitoring and preventing senescence
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2016-07-19
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