细胞生长
细胞
细胞生物学
细胞凋亡
程序性细胞死亡
PDX1型
生物
小岛
体内
条件基因敲除
化学
作者
Sharon Baumel-Alterzon,Liora S Katz,Gabriel Brill,Clairete Jean-Pierre,Yansui Li,Isabelle Tse,Shyam Biswal,Adolfo Garcia-Ocaña,Donald K. Scott
出处
期刊:Diabetes
[American Diabetes Association]
日期:2022-05-01
卷期号:71 (5): 989-1011
摘要
Finding therapies that can protect and expand functional β-cell mass is a major goal of diabetes research. Here, we generated β-cell-specific conditional knockout and gain-of-function mouse models and used human islet transplant experiments to examine how manipulating Nrf2 levels affects β-cell survival, proliferation, and mass. Depletion of Nrf2 in β-cells results in decreased glucose-stimulated β-cell proliferation ex vivo and decreased adaptive β-cell proliferation and β-cell mass expansion after a high-fat diet in vivo. Nrf2 protects β-cells from apoptosis after a high-fat diet. Nrf2 loss of function decreases Pdx1 abundance and insulin content. Activating Nrf2 in a β-cell-specific manner increases β-cell proliferation and mass and improves glucose tolerance. Human islets transplanted under the kidney capsule of immunocompromised mice and treated systemically with bardoxolone methyl, an Nrf2 activator, display increased β-cell proliferation. Thus, by managing reactive oxygen species levels, Nrf2 regulates β-cell mass and is an exciting therapeutic target for expanding and protecting β-cell mass in diabetes.
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