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Dexmedetomidine alleviates CoCl2-induced hypoxic cellular damage in INS-1 cells by regulating autophagy

Authors
 Jin Ha Park  ;  Ju Eun Oh  ;  Namo Kim  ;  Young-Lan Kwak 
Citation
 KOREAN JOURNAL OF ANESTHESIOLOGY, Vol.77(6) : 623-634, 2024-12 
Journal Title
KOREAN JOURNAL OF ANESTHESIOLOGY
ISSN
 2005-6419 
Issue Date
2024-12
MeSH
Animals ; Apoptosis / drug effects ; Autophagy* / drug effects ; Autophagy* / physiology ; Cell Hypoxia / drug effects ; Cell Hypoxia / physiology ; Cell Line, Tumor ; Cell Survival / drug effects ; Cell Survival / physiology ; Cobalt* / toxicity ; Dexmedetomidine* / pharmacology ; Insulin-Secreting Cells / drug effects ; Insulin-Secreting Cells / metabolism ; Rats ; Reperfusion Injury / prevention & control
Keywords
Autophagy ; Beta cells ; Cell injury ; Cobalt chloride ; Dexmedetomidine ; Hypoxia ; Pancreas
Abstract
Background: Ischemia-reperfusion (I/R) injury is inevitable during the perioperative period. The pancreas is susceptible to I/R injury. Autophagy, a self-digestion process, is upregulated during I/R injury and strongly induced by hypoxia. This study aims to determine whether dexmedetomidine can decrease pancreatic β-cell damage by regulating autophagy under hypoxia.

Methods: INS-1 rat insulinoma cells were cultured in dexmedetomidine before being exposed to cobalt chloride (CoCl2)-induced hypoxia. Cell viability and the expression of autophagy-related proteins (light chain 3B [LC3B]-II, p62, and ATGs) were assessed. The expression of apoptosis-related proteins (BCL-2 and P-BAD) were also evaluated. CoCl2-treated INS-1 cells were pretreated with the autophagosome formation inhibitor, 3-methyladenine (3-MA), to compare its effects with those of dexmedetomidine. Bafilomycin-A1 (Baf-A1) that inhibits autophagosome degradation was used to confirm the changes in autophagosome formation induced by dexmedetomidine.

Results: Dexmedetomidine attenuated the increased expression of autophagic proteins (LC3B-II, p62, and ATGs) and reversed the CoCl2-induced reduction in the proliferation of INS-1 cells after hypoxia. Dexmedetomidine also alleviated the decreased expression of the anti-apoptotic protein (BCL-2) and the increased expression of apoptotic protein (BAX). Dexmedetomidine reduces the activation of autophagy through inhibiting autophagosome formation, as confirmed by a decrease in LC3B-II/I ratio, a marker of autophagosome formation, in LC3B turnover assay combined with Baf-A1.

Conclusions: Dexmedetomidine alleviates the degree of cellular damage in INS-1 cells against CoCl2-induced hypoxia by regulating autophagosome formation. These results provide a basis for further studies to confirm these effects in clinical practice.
Files in This Item:
T202407325.pdf Download
DOI
10.4097/kja.24457
Appears in Collections:
1. College of Medicine (의과대학) > Research Institute (부설연구소) > 1. Journal Papers
1. College of Medicine (의과대학) > Dept. of Anesthesiology and Pain Medicine (마취통증의학교실) > 1. Journal Papers
Yonsei Authors
Kwak, Young Lan(곽영란) ORCID logo https://orcid.org/0000-0002-2984-9927
Kim, Namo(김남오) ORCID logo https://orcid.org/0000-0002-0829-490X
Park, Jin Ha(박진하) ORCID logo https://orcid.org/0000-0002-1398-3304
Oh, Ju Eun(오주은)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/201448
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