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Updated: Sep 26, 2025

Assessment of the Immunomodulatory Properties of Human Mesenchymal Stem Cells MSCs
Published on: December 24, 2015
Senescence State in Mesenchymal Stem Cells at Low Passages: Implications in Clinical Use
Raquel M Alves-Paiva1, Sabrina do Nascimento2, Denise De Oliveira1
1Department of Hemotherapy and Cellular Therapy, Hospital Israelita Albert Einstein, São Paulo, Brazil.
Abstract:
Mesenchymal stem cells (MSCs) are multipotent cells found in various tissues and are easily cultivated. For use in clinical protocols, MSCs must be expanded to obtain an adequate number of cells, but a senescence state may be instituted after some passages, reducing their replicative potential. In this study, we report a case where MSC derived from an elderly donor acquired a senescence state after three passages. The bone marrow was aspirated from a female patient submitted to a cell therapy for the incontinency urinary protocol; MSCs were cultivated with DMEM low glucose, supplemented with 10% autologous serum (AS) plus 1% L-glutamine and 1% antibiotic/antimycotic. Senescence analysis was performed by β-galactosidase staining after 24 and 48 h. Controls were established using BM-MSC from healthy donors and used for senescence and gene expression assays. Gene expression was performed using RT-PCR for pluripotency genes, such as SOX2, POU5F1, NANOG, and KLF4. MSC telomere length was measured by the Southern blotting technique, and MSCs were also analyzed for their capacity to differentiate into adipocytes, chondrocytes, and osteocytes. The patient's MSC expansion using AS displayed an early senescence state. In order to understand the role of AS in senescence, MSCs were then submitted to two different culture conditions: 1) with AS or 2) with FBS supplementation. Senescence state was assessed after 24 h, and no statistical differences were observed between the two conditions. However, patients' cells cultured with AS displayed a higher number of senescence cells than FBS medium after 48 h (p = 0.0018). Gene expression was performed in both conditions; increased expression of KLF4 was observed in the patient's cells in comparison to healthy controls (p = 0.0016); reduced gene expression was observed for NANOG (p = 0.0016) and SOX2 (p = 0.0014) genes. Telomere length of the patient's cells was shorter than that of a healthy donor and that of a patient of similar age. Osteocyte differentiation seemed to be more diffuse than that of the healthy donor and that of the patient of similar age. MSCs could enter a senescence state during expansion in early passages and can impact MSC quality for clinical applications, reducing their efficacy when administered.
Insights
Mesenchymal stem cells (MSCs) from an elderly donor showed early senescence after minimal expansion, impacting their clinical potential. Autologous serum (AS) exacerbated senescence in MSCs compared to fetal bovine serum (FBS) after 48 hours.
Area of Science:
- Stem Cell Biology
- Regenerative Medicine
- Cellular Senescence
Background:
- Mesenchymal stem cells (MSCs) are crucial for clinical applications but can undergo senescence during expansion.
- Early senescence limits the replicative potential and efficacy of MSCs in therapeutic settings.
Purpose of the Study:
- To investigate early senescence in MSCs derived from an elderly donor.
- To evaluate the impact of autologous serum (AS) on MSC senescence and characteristics.
Main Methods:
- Bone marrow-derived MSCs (BM-MSCs) from an elderly patient and healthy donors were cultured.
- Senescence was assessed via β-galactosidase staining.
- Gene expression of pluripotency markers (SOX2, POU5F1, NANOG, KLF4) was analyzed using RT-PCR.
- Telomere length and differentiation capacity (osteocytes, chondrocytes, adipocytes) were evaluated.
Main Results:
- MSCs from the elderly donor exhibited early senescence after only three passages, particularly when cultured with AS.
- AS promoted a higher number of senescent cells compared to FBS after 48 hours.
- Patient-derived MSCs showed altered gene expression (increased KLF4, decreased NANOG and SOX2) and shorter telomeres compared to controls.
- Osteogenic differentiation appeared less organized in patient-derived MSCs.
Conclusions:
- Early senescence is a significant concern for MSC expansion, even after few passages.
- Autologous serum may accelerate MSC senescence, potentially compromising cell quality for clinical use.
- These findings highlight the need for careful monitoring of MSCs during expansion to ensure therapeutic efficacy.
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