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Kesim, C.

Publications and source records attributed to Kesim, C..

2 recordsLinked to original sources

Adipose-derived Mesenchymal Stem Cells and Retinal Pigment Epithelial Cells Interactions in Stress Environment via Tunneling Nanotubes

This study aims to demonstrate the formation of TNTs between AdMSCs and RPE-1 and their alterations in response to experimental stress conditions. Serum starvation was employed as a stress condition to induce TNTs between the AdMSC and RPE-1. The presence of TNTs was demonstrated through immunofluorescence microscopy while scanning electron microscopy was utilized to determine the average thickness. Cell viabilities were assessed after stress by CTG, and H2DCFH-DA probes evaluated the cells reactive oxygen species (ROS) levels. Further, JC-1 labeled mitochondrial exchange between cells via TNTs was supported by videos. A transmembrane culture system was employed to inhibit TNT formation. In this study, we investigated the role of TNTs in facilitating intercellular communication and mitochondrial transfer between AdMSCs and RPE-1 under stress. We found that TNT-mediated mitochondrial transfer from AdMSCs to RPE-1 helps to reduce ROS levels and improve cell viability. We demonstrated that direct interaction between AdMSCs and RPE-1 was crucial for stress recovery. Co-culture enhanced viability and sustained retinal epithelial cell function after stress-induced damage. Mechanical inhibition of TNT formation decreased cell viability and increased ROS levels, indicating the importance of TNTs in cellular protection. The findings can provide a new perspective on the therapeutic potential of stem cell-based therapy in protecting RPE against stress-induced damage and promoting tissue regeneration.

cell biology↗

Effects of Primed Adipose Mesenchymal Stem Cell-Derived Exosomes on Immunomodulation in Behcet Uveitis

PurposeThis study sought to investigate the potential role of exosomes of interferon-gamma (IFN-{gamma}) primed (IFN+Exo) and non-primed (IFN-Exo) adipose-derived mesenchymal stem cells (AdMSCs) for the treatment of Behcet Disease (BD) uveitis (BU). MethodsAdMSCs were isolated from adipose tissue. Characterization and multipotency analyses were performed. Exosomes were isolated from the media of AdMSCs and then characterized. Peripheral blood mononuclear cells (PBMC) were isolated from patients with BU and healthy individuals. AdMSCs were preincubated with or without IFN-{gamma} for 48 h. PBMC of patients with BU and healthy controls separately cultured with exosomes for 72 h. After the culture period, lymphocyte proliferation, viability, and apoptosis were carried out via flow cytometry. The expression of interleukin (IL)-10, IL-17, transforming growth factor (TGF)-{beta}, and interferon (IFN)-{gamma} levels were measured by real-time polymerase chain reaction (RT-PCR). ResultsIFN+Exo promoted lymphocyte apoptosis in patients with BU. IFN+Exo suppressed cell viability of T lymphocytes of BU. Exosomes alone did not affect on T lymphocyte proliferation. Additionally, exosomes increased anti-inflammatory cytokine levels and reduced pro-inflammatory cytokine levels of T lymphocytes in patients with BU. ConclusionThis studys findings can open a new pathway in MSCs/exosome therapy in BU.

immunology↗