A novel ferroptosis inhibitor phenothiazine derivative reduces cell death and alleviates neurological impairments after cerebral hemorrhage

IF 4.6 2区 医学 Q1 NEUROSCIENCES
Bing-Qiao Wang , Yu-Fan Ma , Ru Chen , Guo-Qing Zhang , Qi Xie , Chang-Xiong Gong , Xiao-feng Cheng , Qin Zhang , Yuan Zhao , Shuang Zhang , Zhao-You Meng , Yi-Liang Fang , Cheng-Kang He , Yan-Jie Huang , Sen Lin , Qing-Wu Yang
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Abstract

The precise etiology of brain injury induced by intracerebral hemorrhage (ICH) remains unclear. Currently, there are no effective therapeutic options available to slow down or prevent the progression of the disease. An increasing body of evidence suggests that ferroptosis plays a significant role in the development of injury related to ICH. Furthermore, pharmacological inhibition of ferroptosis has been identified as a promising therapeutic target for ICH injury. The compound 2-(1-(4-(4-methylpiperazin-1-yl)phenyl)ethyl)-10H-phenothiazine (compound-51), a derivative of promethazine, has been demonstrated to exhibit anti-ferroptosis and antioxidant properties. The aim of this study is to investigate the role and mechanism of action of compound-51 in a rat model of ICH. The in vivo experiments demonstrated that compound-51 significantly alleviated neurological impairments, reduced brain edema, and decreased hematoma volume. At the cellular level, compound-51 was observed to significantly enhance cellular survival and inhibit ferroptosis. Furthermore, compound-51 demonstrated a more pronounced therapeutic effect than Fer-1, without causing any injury to the heart, kidney, or liver. In vitro experiments demonstrated that compound-51 significantly increased cell viability and intracellular GPX4 levels, while reducing lipid peroxidation and oxidized glutathione levels. Collectively, these findings indicate that compound-51 exhibits a pronounced anti-ferroptosis function and alleviates neurological impairments in an ICH model, suggesting its potential as a new therapeutic agent for the treatment of ICH.
一种新型的铁下垂抑制剂吩噻嗪衍生物可减少脑出血后的细胞死亡和神经损伤
脑出血所致脑损伤的确切病因尚不清楚。目前,还没有有效的治疗选择来减缓或预防疾病的进展。越来越多的证据表明,铁下垂在脑出血相关损伤的发展中起着重要作用。此外,药物抑制铁下垂已被确定为脑出血损伤的一个有希望的治疗靶点。化合物2-(1-(4-(4-甲基哌嗪-1-基)苯基)乙基)- 10h -吩噻嗪(化合物-51)是异丙嗪的衍生物,已被证明具有抗铁下垂和抗氧化性能。本研究旨在探讨化合物-51在脑出血大鼠模型中的作用及其机制。体内实验表明,化合物-51能显著减轻神经损伤,减轻脑水肿,减少血肿体积。在细胞水平上,化合物-51能显著提高细胞存活率,抑制铁下垂。此外,化合物-51比fe -1表现出更明显的治疗效果,而且不会对心脏、肾脏或肝脏造成任何损伤。体外实验表明,化合物-51显著提高细胞活力和细胞内GPX4水平,同时降低脂质过氧化和谷胱甘肽氧化水平。综上所述,这些发现表明化合物-51具有明显的抗铁下垂功能,并能减轻脑出血模型中的神经损伤,这表明它有可能成为一种治疗脑出血的新药物。
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来源期刊
Neuropharmacology
Neuropharmacology 医学-神经科学
CiteScore
10.00
自引率
4.30%
发文量
288
审稿时长
45 days
期刊介绍: Neuropharmacology publishes high quality, original research and review articles within the discipline of neuroscience, especially articles with a neuropharmacological component. However, papers within any area of neuroscience will be considered. The journal does not usually accept clinical research, although preclinical neuropharmacological studies in humans may be considered. The journal only considers submissions in which the chemical structures and compositions of experimental agents are readily available in the literature or disclosed by the authors in the submitted manuscript. Only in exceptional circumstances will natural products be considered, and then only if the preparation is well defined by scientific means. Neuropharmacology publishes articles of any length (original research and reviews).
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