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Lithium and exercise ameliorate insulin-deficient hyperglycemia by independently attenuating pancreatic α-cell mass and hepatic gluconeogenesis
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Title
Lithium and exercise ameliorate insulin-deficient hyperglycemia by independently attenuating pancreatic α-cell mass and hepatic gluconeogenesis
Issued Date
2024-01
Citation
Jung, Su-Ryun. (2024-01). Lithium and exercise ameliorate insulin-deficient hyperglycemia by independently attenuating pancreatic α-cell mass and hepatic gluconeogenesis. Korean Journal of Physiology & Pharmacology, 28(1), 31–38. doi: 10.4196/kjpp.2024.28.1.31
Type
Article
Author Keywords
Diabetes mellitustype 1ExerciseGlucagon-secreting cellsGluconeogenesisLithium
Keywords
GLUCAGON-LIKE PEPTIDE-1SKELETAL-MUSCLEPROTEIN-KINASEGABAMECHANISMSAUTOPHAGYSYNTHASECHLORIDE
ISSN
1226-4512
Abstract
As in type 1 diabetes, the loss of pancreatic β-cells leads to insulin deficiency and the subsequent development of hyperglycemia. Exercise has been proposed as a viable remedy for hyperglycemia. Lithium, which has been used as a treatment for bipolar disorder, has also been shown to improve glucose homeostasis under the conditions of obesity and type 2 diabetes by enhancing the effects of exercise on the skeletal muscles. In this study, we demonstrated that unlike in obesity and type 2 diabetic conditions, under the condition of insulin-deficient type 1 diabetes, lithium administration attenuated pancreatic a-cell mass without altering insulin-secreting β-cell mass, implying a selective impact on glucagon production. Additionally, we also documented that lithium downregulated the hepatic gluconeogenic program by decreasing G6Pase protein levels and upregulating AMPK activity. These findings suggest that lithium’s effect on glucose metabolism in type 1 diabetes is mediated through a different mechanism than those associated with exerciseinduced metabolic changes in the muscle. Therefore, our research presents the novel therapeutic potential of lithium in the treatment of type 1 diabetes, which can be utilized along with insulin and independently of exercise. © Korean Journal of Physiology & Pharmacology
URI
http://hdl.handle.net/20.500.11750/47655
DOI
10.4196/kjpp.2024.28.1.31
Publisher
the Korean Physiological Society (KPS) and the Korean Society of Pharmacology (KSP)
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Lee, Jaemin이재민

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