1. Hypoxia Increases β-Cell Death by Activating Pancreatic Stellate Cells within the Islet
- Author
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Gyeong Ryul Ryu, Yu-Bae Ahn, Seung Hyun Ko, Esder Lee, Ki-Ho Song, and Jong Jin Kim
- Subjects
endocrine system ,medicine.medical_specialty ,Programmed cell death ,endocrine system diseases ,Endocrinology, Diabetes and Metabolism ,Apoptosis ,030209 endocrinology & metabolism ,030204 cardiovascular system & hematology ,medicine.disease_cause ,Rats, Sprague-Dawley ,Islets of Langerhans ,03 medical and health sciences ,0302 clinical medicine ,Internal medicine ,Animals ,Medicine ,Hypoxia ,Cells, Cultured ,geography ,Pancreatic stellate cells ,geography.geographical_feature_category ,business.industry ,Insulin-secreting cells ,Pancreatic islets ,Hypoxia (medical) ,Islet ,Cell Hypoxia ,Rats ,Basic Research ,Endocrinology ,medicine.anatomical_structure ,Diabetes Mellitus, Type 2 ,Oxidative stress ,Hepatic stellate cell ,Original Article ,medicine.symptom ,business ,Immunostaining - Abstract
Background Hypoxia can occur in pancreatic islets in type 2 diabetes mellitus. Pancreatic stellate cells (PSCs) are activated during hypoxia. Here we aimed to investigate whether PSCs within the islet are also activated in hypoxia, causing β-cell injury. Methods Islet and primary PSCs were isolated from Sprague Dawley rats, and cultured in normoxia (21% O2) or hypoxia (1% O2). The expression of α-smooth muscle actin (α-SMA), as measured by immunostaining and Western blotting, was used as a marker of PSC activation. Conditioned media (hypoxia-CM) were obtained from PSCs cultured in hypoxia. Results Islets and PSCs cultured in hypoxia exhibited higher expressions of α-SMA than did those cultured in normoxia. Hypoxia increased the production of reactive oxygen species. The addition of N-acetyl-L-cysteine, an antioxidant, attenuated the hypoxia-induced PSC activation in islets and PSCs. Islets cultured in hypoxia-CM showed a decrease in cell viability and an increase in apoptosis. Conclusion PSCs within the islet are activated in hypoxia through oxidative stress and promote islet cell death, suggesting that hypoxia-induced PSC activation may contribute to β-cell loss in type 2 diabetes mellitus.
- Published
- 2020
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