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Functional beta-cells derived from umbilical cord blood mesenchymal stem cells for curing rats with streptozotocin-induced diabetes mellitus
Authors:Mohamed El-Sherbiny  Mohamed Ahmed Eladl  Anu Vinod Ranade  Maha Guimei  Hala Gabr
Institution:1.Anatomy and Embryology, University of Mansoura, Mansoura, Egypt;2.Department of Basic Medical Sciences, Medical College, University of Sharjah, Sharjah, United Arab Emirates;3.Department of Clinical Sciences, Medical College, University of Sharjah, Sharjah, United Arab Emirates;4.Department of Pathology, University of Alexandria, Alexandria, Egypt;5.Faculty of Medicine, Department of Clinical Pathology, Cairo University, Cairo, Egypt
Abstract:INTRODUCTIONThis study aimed to investigate the therapeutic response to injected human umbilical cord blood mesenchymal stem cells (UCBMSCs) among albino rats with streptozotocin (STZ)-induced diabetes mellitus.METHODSControl group (GI; n = 25) rats were fed with standard rat diet. Rats with STZ-induced diabetes mellitus without (GII; n = 25) and with (GIII; n = 25) differentiated human UCBMSCs implantation were the test groups. Rats were sacrificed in Week 11 following implantation. Liver biopsies were sectioned and stained in order to highlight both the presence and function of impregnated cells in the liver tissue.RESULTSHaematoxylin and eosin-stained sections in GI and GII rats showed normal liver architecture while GIII rats showed presence of cell clusters inside the liver tissue and around the central veins. Cell clusters with blue cytoplasm were present in sections in GIII rats but absent in GI and GII rats, indicating the presence of injected differentiated human UCBMSCs. The anti-human insulin immunostaining of GIII rats showed clusters of cells within the liver parenchyma and around central veins, indicating that these cells were active and secreting insulin.CONCLUSIONUCBMSCs are proficient in differentiating into insulin-producing cells in vivo under specific conditions and, when transplanted into the liver of albino rats with STZ-induced diabetes mellitus, were able to secrete insulin and partially control the status of diabetes mellitus in rats.
Keywords:cell clusters  Exendin-4  hepatic lobules  insulin-producing cells  transplantation
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