Protective Effect of Cordycepin on Impairment of Endothelial Function in Type 2 Diabetes Mellitus.


Journal

International journal of medicinal mushrooms
ISSN: 1940-4344
Titre abrégé: Int J Med Mushrooms
Pays: United States
ID NLM: 100886202

Informations de publication

Date de publication:
2022
Historique:
entrez: 25 4 2022
pubmed: 26 4 2022
medline: 28 4 2022
Statut: ppublish

Résumé

Type 2 diabetes mellitus (T2DM) is a major risk factor for cardiovascular diseases. The reduction of mitochondrial protein sirtuin protein 3 (SIRT3) has been reported to contribute to the development of T2DM by impacting mitochondrial respiration. Cordycepin is an adenosine derivative and is isolated from the culture filtrate of Cordyceps militaris. This study explored the protective effect of cordycepin on vascular impairment induced by T2DM and its properties and protective mechanism. In this study, a T2DM rat model was established. The endothelium-dependent relaxation of the thoracic aorta ring decreased in T2DM rats could be reversed by cordycepin. Next, mitochondrial impairment in human umbilical vein endothelial cells was detected by JC-1 staining. In vitro studies revealed that cordycepin plays a beneficial role in advanced glycation end product-induced endothelial mitochondrial impairment. Moreover, according to the cordycepin molecular docking analysis, cordycepin can bind to SIRT3. Cordycepin increased the expression and activation of SIRT3 in a dose-dependent manner. SIRT3 interruption blocked the protective effect of cordycepin on mitochondria in human umbilical vein endothelial cells. Cordycepin can conclusively protect vascular function impaired by T2DM, and the mechanism may potentially be involved in SIRT3 signaling pathways.

Identifiants

pubmed: 35467807
pii: 477ba92409ddbf06,1393ad7773960ec8
doi: 10.1615/IntJMedMushrooms.2021041927
doi:

Substances chimiques

Deoxyadenosines 0
Sirtuin 3 EC 3.5.1.-
cordycepin GZ8VF4M2J8

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

65-75

Auteurs

Bei Xue (B)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Liang Li (L)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Xue-Dong Gu (XD)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Zhang Luo (Z)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Fu-Chen Jia (FC)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Jia-Chen Zhang (JC)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Yi Liu (Y)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Zhendong Liu (Z)

Food Science College, Tibet Agriculture and Animal Husbandry University, Nyingchi Tibet 860000, People's Republic of China.

Wenhan Wang (W)

National Engineering Research Center of Edible Fungi, Key Laboratory of Applied Mycological Resources and Utilization of Ministry of Agriculture, Shanghai Key Laboratory of Agricultural Genetics and Breeding; Institute of Edible Fungi, Shanghai Academy of Agricultural Sciences, Shanghai, 201403, P.R. China.

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