Oxidative stress plays a role in high glucose-induced activation of pancreatic stellate cells |
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Authors: | Gyeong Ryul Ryu Esder Lee Hyun-Ji Chun Kun-Ho YoonSeung-Hyun Ko Yu-Bae AhnKi-Ho Song |
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Affiliation: | Division of Endocrinology and Metabolism, Department of Internal Medicine, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea |
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Abstract: | The activation of pancreatic stellate cells (PSCs) is thought to be a potential mechanism underlying islet fibrosis, which may contribute to progressive β-cell failure in type 2 diabetes. Recently, we demonstrated that antioxidants reduced islet fibrosis in an animal model of type 2 diabetes. However, there is no in vitro study demonstrating that high glucose itself can induce oxidative stress in PSCs. Thus, PSCs were isolated and cultured from Sprague Dawley rats, and treated with high glucose for 72 h. High glucose increased the production of reactive oxygen species. When treated with high glucose, freshly isolated PSCs exhibited myofibroblastic transformation. During early culture (passage 1), PSCs treated with high glucose contained an increased number of α-smooth muscle actin-positive cells. During late culture (passages 2–5), PSCs treated with high glucose exhibited increases in cell proliferation, the expression of fibronectin and connective tissue growth factor, release of interleukin-6, transforming growth factor-β and collagen, and cell migration. Finally, the treatment of PSCs with high glucose and antioxidants attenuated these changes. In conclusion, we demonstrated that high glucose increased oxidative stress in primary rat PSCs, thereby facilitating the activation of these cells, while antioxidant treatment attenuated high glucose-induced PSC activation. |
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Keywords: | PSC, pancreatic stellate cell IL, interleukin α-SMA, α-smooth muscle actin TNF-α, tumor necrosis factor-α PDGF, platelet-derived growth factor TGF-β, transforming growth factor-β ROS, reactive oxygen species CTGF, connective tissue growth factor ERK, extracellular signal-regulated kinase MAPK, mitogen-activated protein kinase OLETF, Otsuka Long-Evans Tokushima Fatty RAS, renin-angiotensin system PKC, protein kinase C GBSS, Gey&rsquo s balanced salt solution DMEM, Dulbecco&rsquo s Modified Eagle&rsquo s Medium FCS, fetal calf serum DCF, dichloro-dihydrofluorescein diacetate BrdU, 5-bromo-2-deoxyuridine DAPI, 4&prime ,6&prime -diamidino-2-phenylindole |
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