Melatonin exerts neuroprotective effects in mice with spinal cord injury by activating the Nrf2/Keap1 signaling pathway via the MT2 receptor

被引:10
作者
Yan, Liyan [1 ]
Han, Xiaonan [1 ]
Zhang, Mingkang [1 ]
Kou, Hongwei [1 ]
Liu, Hongjian [1 ]
Cheng, Tian [1 ]
机构
[1] Zhengzhou Univ, Affiliated Hosp 1, Dept Orthoped, 1 Longhu Zhonghuan Rd, Zhengzhou 450052, Henan, Peoples R China
关键词
spinal cord injury; melatonin; neuroprotection; nuclear factor-erythroid 2-related factor 2; MT2; PROTECTS HEMORRHAGIC BRAIN; OXIDATIVE STRESS; M1; PHENOTYPE; EXPRESSION; POLARIZATION; MECHANISMS; NRF2; (-)-EPICATECHIN; MODEL; IRON;
D O I
10.3892/etm.2023.12325
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Spinal cord injury (SCI) is a devastating event that often leads to severe disability, and effective treatments for SCI are currently limited. The present study investigated the potential effects and specific mechanisms of melatonin treatment in SCI. Mice were divided into Sham (Sham), Vehicle (Veh), Melatonin (Mel), and Melatonin + 4-phenyl-2-propionamidotetralin (4P-PDOT) (Mel + 4PP) groups based on randomized allocation. The expression of MT2 and the nuclear factor-erythroid 2-related factor 2 (Nrf2)/Keap1 signaling pathways were examined, along with oxidative stress indicators, inflammatory factors and GFAP-positive cells near the injury site. The polarization of microglial cells in different inflammatory microenvironments was also observed. Cell survival, motor function recovery and spinal cord tissue morphology were assessed using staining and Basso Mouse Scale scores. On day 7 after SCI, the results revealed that melatonin treatment increased MT2 protein expression and activated the Nrf2/Keap1 signaling pathway. It also reduced GFAP-positive cells, mitigated oxidative stress, and suppressed inflammatory responses around the injury site. Furthermore, melatonin treatment promoted the polarization of microglia toward the M2 type, increased the number of neutrophil-positive cells, and modulated the transcription of Bax and Bcl2 in the injured spinal cord. Melatonin treatment alleviated the severity of spinal injuries and facilitated functional recovery in mice with SCI. Notably, blocking MT2 with 4P-PDOT partially reversed the neuroprotective effects of melatonin in SCI, indicating that the activation of the MT2/Nrf2/Keap1 signaling pathway contributes to the neuroprotective properties of melatonin in SCI. The therapeutic and translational potentials of melatonin in SCI warrant further investigation.
引用
收藏
页数:12
相关论文
共 61 条
[1]   Epidemiology of traumatic spinal cord injury: a large population-based study [J].
Amidei, Claudio Barbiellini ;
Salmaso, Laura ;
Bellio, Stefania ;
Saia, Mario .
SPINAL CORD, 2022, 60 (09) :812-819
[2]   Basso mouse scale for locomotion detects differences in recovery after spinal cord in ury in five common mouse strains [J].
Basso, DM ;
Fisher, LC ;
Anderson, AJ ;
Jakeman, LB ;
McTigue, DM ;
Popovich, PG .
JOURNAL OF NEUROTRAUMA, 2006, 23 (05) :635-659
[3]   Melatonin receptor structures shed new light on melatonin research [J].
Cecon, Erika ;
Liu, Lei ;
Jockers, Ralf .
JOURNAL OF PINEAL RESEARCH, 2019, 67 (04)
[4]   (-)-Epicatechin protects hemorrhagic brain via synergistic Nrf2 pathways [J].
Chang, Che-Feng ;
Cho, Suzy ;
Wang, Jian .
ANNALS OF CLINICAL AND TRANSLATIONAL NEUROLOGY, 2014, 1 (04) :258-271
[5]   Early-life sleep deprivation persistently depresses melatonin production and bio-energetics of the pineal gland: potential implications for the development of metabolic deficiency [J].
Chen, Li-You ;
Tiong, Cheng ;
Tsai, Chung-Hung ;
Liao, Wen-Chieh ;
Yang, Shun-Fa ;
Youn, Su-Chung ;
Mai, Fu-Der ;
Chang, Hung-Ming .
BRAIN STRUCTURE & FUNCTION, 2015, 220 (02) :663-676
[6]   Cerebroprotection of flavanol (-)-epicatechin after traumatic brain injury via Nrf2-dependent and -independent pathways [J].
Cheng, Tian ;
Wang, Wenzhu ;
Li, Qian ;
Han, Xiaoning ;
Xing, Jing ;
Qi, Cunfang ;
Lan, Xi ;
Wan, Jieru ;
Potts, Alexa ;
Guan, Fangxia ;
Wang, Jian .
FREE RADICAL BIOLOGY AND MEDICINE, 2016, 92 :15-28
[7]   Wharton's Jelly Transplantation Improves Neurologic Function in a Rat Model of Traumatic Brain Injury [J].
Cheng, Tian ;
Yang, Bo ;
Li, Dongpeng ;
Ma, Shanshan ;
Tian, Yi ;
Qu, Ruina ;
Zhang, Wenjin ;
Zhang, Yanting ;
Hu, Kai ;
Guan, Fangxia ;
Wang, Jian .
CELLULAR AND MOLECULAR NEUROBIOLOGY, 2015, 35 (05) :641-649
[8]   Melatonin ameliorates neural function by promoting endogenous neurogenesis through the MT2 melatonin receptor in ischemic-stroke mice [J].
Chern, Chang-Ming ;
Liao, Jyh-Fei ;
Wang, Yea-Hwey ;
Shen, Yuh-Chiang .
FREE RADICAL BIOLOGY AND MEDICINE, 2012, 52 (09) :1634-1647
[9]   Mechanisms of Nrf2/Keap1-Dependent Phase II Cytoprotective and Detoxifying Gene Expression and Potential Cellular Targets of Chemopreventive Isothiocyanates [J].
Das, Biswa Nath ;
Kim, Young-Woo ;
Keum, Young-Sam .
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY, 2013, 2013
[10]   Melatonin stimulates antioxidant enzymes and reduces oxidative stress in experimental traumatic brain injury: the Nrf2-ARE signaling pathway as a potential mechanism [J].
Ding, Ke ;
Wang, Handong ;
Xu, Jianguo ;
Li, Tao ;
Zhang, Li ;
Ding, Yu ;
Zhu, Lin ;
He, Jin ;
Zhou, Mengliang .
FREE RADICAL BIOLOGY AND MEDICINE, 2014, 73 :1-11