Esketamine alleviates hypoxia/reoxygenation injury of cardiomyocytes by regulating TRPV1 expression and inhibiting intracellular Ca 2+concentration

被引:1
作者
Zhang, Ying [1 ]
Lu, Quanmei [1 ]
Hu, Hanchun [1 ]
Yang, Chunchen [1 ]
Zhao, Qihong [2 ]
机构
[1] Affiliated Hosp 1, Bengbu Med Coll, Dept Anesthesiol, Bengbu, Anhui, Peoples R China
[2] Bengbu Med Coll, Affiliated Hosp 2, Dept Anesthesiol, Bengbu, Anhui, Peoples R China
关键词
Esketamine; TRPV1; Cardiomyocytes; Hypoxia/Reoxygenation Injury; Ca2+; APOPTOSIS; CHANNELS;
D O I
10.1016/j.clinsp.2024.100363
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objective: This study aimed to investigate the effect of Esketamine (ESK) on the Hypoxia/Reoxygenation (H/R) injury of cardiomyocytes by regulating TRPV1 and inhibiting the concentration of intracellular Ca2+. Methods: The H/R injury model of H9c2 cardiomyocytes was established after 4h hypoxia and 6h reoxygenation. H9c2 cells were treated with different concentrations of ESK or TRPV1 agonist capsaicin (10 mu M) or TRPV1 inhibitor capsazepine (1 mu M). Cell viability was detected by CCK-8 method, and apoptosis by flow cytometry. Intracellular Ca2+ concentration was evaluated by Fluo-4 AM. LDH, MDA, SOD, and GSH-Px were detected with corresponding commercial kits. TRPV1 and p-TRPV1 proteins were detected by Western blot. Results: After H/R, H9c2 cell viability decreased, apoptosis increased, intracellular Ca2+ concentration increased, LDH and MDA levels increased, SOD and GSH-Px levels decreased, and p-TRPV1 expression increased. ESK treatment rescued these changes induced by H/R. After up-regulating TRPV1, the protective effect of ESK on H/R injury of H9c2 cells was weakened, while down-regulating TRPV1 could further protect against H/R injury. Conclusion: ESK alleviates H/R injury of cardiomyocytes by regulating TRPV1 expression and inhibiting intracellular Ca2+ concentration.
引用
收藏
页数:7
相关论文
共 31 条
[1]   Myocardial ischemia-reperfusion injury and the influence of inflammation  [J].
Algoet, Michiel ;
Janssens, Stefan ;
Himmelreich, Uwe ;
Gsell, Willy ;
Pusovnik, Matic ;
van den Eynde, Jef ;
Oosterlinck, Wouter .
TRENDS IN CARDIOVASCULAR MEDICINE, 2023, 33 (06) :357-366
[2]   ROS and redox signaling in myocardial ischemia-reperfusion injury and cardioprotection [J].
Cadenas, Susana .
FREE RADICAL BIOLOGY AND MEDICINE, 2018, 117 :76-89
[3]   Divalent cations potentiate TRPV1 channel by lowering the heat activation threshold [J].
Cao, Xu ;
Ma, Linlin ;
Yang, Fan ;
Wang, KeWei ;
Zheng, Jie .
JOURNAL OF GENERAL PHYSIOLOGY, 2014, 143 (01) :75-90
[4]   Apelin/APJ System: A Novel Therapeutic Target for Myocardial Ischemia/Reperfusion Injury [J].
Chen, Zhe ;
Wu, Di ;
Li, Lanfang ;
Chen, Linxi .
DNA AND CELL BIOLOGY, 2016, 35 (12) :766-775
[5]   Duloxetine Reduces Oxidative Stress, Apoptosis, and Ca2+ Entry Through Modulation of TRPM2 and TRPV1 Channels in the Hippocampus and Dorsal Root Ganglion of Rats [J].
Demirdas, Arif ;
Naziroglu, Mustafa ;
Ovey, Ishak Suat .
MOLECULAR NEUROBIOLOGY, 2017, 54 (06) :4683-4695
[6]   Intrathecal lentivirus-mediated RNA interference targeting nerve growth factor attenuates myocardial ischaemia-reperfusion injury in rat [J].
Dou, Mengyun ;
Ma, Zhenxiao ;
Cheng, Xueying ;
Zou, Guichang ;
Xu, Yan ;
Huang, Cheng ;
Xiong, Wei ;
He, Shufang ;
Zhang, Ye .
BRITISH JOURNAL OF ANAESTHESIA, 2019, 123 (04) :439-449
[7]   Autophagy and Myocardial Ischemia [J].
Du, Jie ;
Li, Yulin ;
Zhao, Wei .
AUTOPHAGY: BIOLOGY AND DISEASES: CLINICAL SCIENCE, 2020, 1207 :217-222
[8]   Hydroxychloroquine Attenuates Acute Inflammation (LPS)-Induced Apoptosis via Inhibiting TRPV1 Channel/ROS Signaling Pathways in Human Monocytes [J].
Guzel, Mustafa ;
Akpinar, Orhan .
BIOLOGY-BASEL, 2021, 10 (10)
[9]   Esketamine ameliorates post-stroke anxiety by modulating microglial HDAC3/NF-?B/COX1 inflammatory signaling in ischemic cortex [J].
Huang, Ailing ;
Chen, Yang ;
Wang, Shaoshuang ;
Du, Hailiang ;
Guan, Ao ;
Wu, Huanghui ;
Zhai, Qian ;
Duan, Na ;
Li, Xuying ;
Zhao, Pin ;
Zhu, Yulin ;
Bai, Juan ;
Xiao, Ye ;
Yang, Tingting ;
Wang, Qiang ;
Deng, Bin .
EUROPEAN JOURNAL OF PHARMACOLOGY, 2023, 947
[10]   Modulation of Diabetes-Induced Oxidative Stress, Apoptosis, and Ca2+ Entry Through TRPM2 and TRPV1 Channels in Dorsal Root Ganglion and Hippocampus of Diabetic Rats by Melatonin and Selenium [J].
Kahya, Mehmet Cemal ;
Naziroglu, Mustafa ;
Ovey, Ishak Suat .
MOLECULAR NEUROBIOLOGY, 2017, 54 (03) :2345-2360