The Development of Cellular Aging Models Based on AD-MSCs

Cellular senescence of adipose tissue-derived mesenchymal stromal cells (AD-MSCs) is associated with chronic low-grade inflammation, metabolic dysfunction, and impaired adipogenesis contributing to the development of obesity, insulin resistance, and the progression of age-associated diseases. The aim of this study was to develop a model of cellular aging based on AD-MSCs to study the senolytic efficacy of the natural fisetin preparation for the subsequent development of geroprotective therapeutic strategies. The senescent markers SA-β-gal, SASP factors, and cell cycle arrest markers p16, p21, and p53 were assessed in models of replicative and stress-induced aging of AD-MSCs. H2O2 was identified as the most effective inducer of AD-MSC cellular senescence in comparison with LPS. It has been shown in the model of H2O2-induced senescence of AD-MSCs that the proportion of SA-β-gal+ cells was 2.0 (0.7)% in non-stimulated AD-MSCs, 81.7 (12.1)% in H2O2-stimulated AD-MSCs, and 19.1 (5.2)% and 13.0 (3.2)% after short-term (24 h) and long-term (7 days) fisetin treatment, respectively, indicating that fisetin treatment was associated with a lower proportion of SA-β-gal+ cells. Fisetin treatment resulted in a statistically significant decrease in the secretion of MCP-1, especially during long-term incubation. IL-1β showed a significant decrease after 7 days of fisetin treatment compared to H2O2, but the effect at 24 h was only significant in the group of 7 days of fisetin treatment. Fisetin treatment was also associated with higher p53 and p21 concentrations. Thus, in the present study, a model of H2O2-induced cellular senescence of AD-MSCs was developed, which can be used to evaluate the geroprotective potential of senotherapeutic preparations; fisetin warrants further evaluation as a potential senotherapeutic agent in this model.

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Journal
Cells
Published
2026-09-09
DOI
https://doi.org/10.3390/cells15181634
Primary Topic
Telomeres, Telomerase, and Senescence
Type
article
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article

The Development of Cellular Aging Models Based on AD-MSCs

Tatiana V. Kirichenko, Alexander M. Markin, Ivan V. Zhivodernikov, Yuliya V. Markina et al.
Cells
Telomeres, Telomerase, and Senescence
article

The Development of Cellular Aging Models Based on AD-MSCs

Tatiana V. Kirichenko, Alexander M. Markin, Ivan V. Zhivodernikov, Yuliya V. Markina, V.S. Vasilyev, Yaroslav Tolkachev, Natalia V. Elizova
article en

Abstract

Cellular senescence of adipose tissue-derived mesenchymal stromal cells (AD-MSCs) is associated with chronic low-grade inflammation, metabolic dysfunction, and impaired adipogenesis contributing to the development of obesity, insulin resistance, and the progression of age-associated diseases. The aim of this study was to develop a model of cellular aging based on AD-MSCs to study the senolytic efficacy of the natural fisetin preparation for the subsequent development of geroprotective therapeutic strategies. The senescent markers SA-β-gal, SASP factors, and cell cycle arrest markers p16, p21, and p53 were assessed in models of replicative and stress-induced aging of AD-MSCs. H2O2 was identified as the most effective inducer of AD-MSC cellular senescence in comparison with LPS. It has been shown in the model of H2O2-induced senescence of AD-MSCs that the proportion of SA-β-gal+ cells was 2.0 (0.7)% in non-stimulated AD-MSCs, 81.7 (12.1)% in H2O2-stimulated AD-MSCs, and 19.1 (5.2)% and 13.0 (3.2)% after short-term (24 h) and long-term (7 days) fisetin treatment, respectively, indicating that fisetin treatment was associated with a lower proportion of SA-β-gal+ cells. Fisetin treatment resulted in a statistically significant decrease in the secretion of MCP-1, especially during long-term incubation. IL-1β showed a significant decrease after 7 days of fisetin treatment compared to H2O2, but the effect at 24 h was only significant in the group of 7 days of fisetin treatment. Fisetin treatment was also associated with higher p53 and p21 concentrations. Thus, in the present study, a model of H2O2-induced cellular senescence of AD-MSCs was developed, which can be used to evaluate the geroprotective potential of senotherapeutic preparations; fisetin warrants further evaluation as a potential senotherapeutic agent in this model.

CellsVol. 15(18)
State Research Center for Dermatovenereology and Cosmetology (RU), Russian Scientific Center of Surgery (RU)
Good health and well-being
Openalex Percentile: Top 11%
Telomeres, Telomerase, and Senescence
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