Immunomodulatory properties of wharton jelly-derived mesenchymal stem sells (iWJ-MSCs)
2024
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Advisor: Doç. Dr. Ayla Eker Sarıboyacı
Abstract (EN)
Objective: The aim of this thesis is to transfect mature miRNA-181a involved in immunoregulation to increase the immunosuppressive efficacy of iWJ-MSCs, which have come to the forefront with both their potency and allogeneic use, and to analyze the effect of transfection in the human pan T cell model, an in vitro immune system model. Methods: In this thesis, T cell response after co-culture with miRNA transfected iWJ-MKCs; viability and proliferation (CCK8), apoptosis (AnnexinV-PI method) and cell cycle change (flow cytometric cell cycle analysis), anti- and pro-inflammatory cytokines (TGF-beta1, IL-6, TLR-4 and STAT1), regulatory T-cell (Treg) (CD4+CD25+Foxp3+), T-bet and T-cell marker/gene expressions (CD3, CD4, CD45, CD4+CD8 and CD69) were analyzed.. Results: PHA-M activated T lymphocytes were shown to be capable of forming distinct and highly viable colonies by phase-constrate microscopy. Both miRNA-transfected and non-miRNA-transfected iWJ-MSCs did not show apoptotic effect on day 4 and apoptosis was decreased. In cell cycle analysis, proliferation and apoptosis were decreased in T cells co-cultured with CCPs and proliferation was decreased and apoptosis was increased (*p<0.05) in those co-cultured with miRNA transfected CCPs compared to T cells alone on day 4. The percentage of T cells expressing T cell markers decreased in both co-culture groups. While TGF-beta gene expression was decreased, its secretion from both MSCs and Tregs in coculture medium increased and IFN-gamma secretion decreased despite the increase in Tbet cell population. It was observed that miRNA transfection increased T cell proliferation, apoptosis and Treg and T-bet populations in CRCs. Conclusion: It was concluded that miR-181a transfection regulates the immunosuppressive effects of CCPs through IL-6, STAT-1 and DUSP5 genes and TGF-beta and IFN-gamma cytokines. This study was financially supported by grants (YL A2 31858) Turkish Institutes of Health (TÜSEB
Author
Fıdan Gakhıyeva
How to Cite
Fıdan Gakhıyeva (Master Thesis). Immunomodulatory properties of wharton jelly-derived mesenchymal stem sells (iWJ-MSCs), 2024, Eskişehir Osmangazi University.
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