细胞内
氧化应激
激活转录因子
背根神经节
神经毒性
细胞生物学
硼替佐米
未折叠蛋白反应
ATF3
癌症研究
生物学中的钙
线粒体
医学
体内
下调和上调
生物
细胞凋亡
药理学
化学
内质网
神经损伤
神经病理性疼痛
周围神经病变
内分泌学
免疫学
内科学
神经科学
脊髓
生物化学
基因表达
多发性骨髓瘤
基因
发起人
毒性
作者
Yiting Yin,Xin Qi,Yuan Qiao,Huaxiang Liu,Zihan Yan,Hao Li,Zhen Liu
标识
DOI:10.2174/1568009618666181003170027
摘要
Background: The notion that proteasome inhibitor bortezomib (BTZ) induced intracellular oxidative stress resulting in peripheral neuropathy has been generally accepted. The association of mitochondrial dysfunction, cell apoptosis, and endoplasmic reticulum (ER) stress with intracellular oxidative stress is ambiguous and still needs to be investigated. The activation of activating transcription factor 3 (ATF3) is a stress-hub gene which was upregulated in dorsal root ganglion (DRG) neurons after different kinds of peripheral nerve injuries. Objective: To investigate a mechanism underlying the action of BTZ-induced intracellular oxidative stress, mitochondrial dysfunction, cell apoptosis, and ER stress via activation of ATF3. </P><P> Methods: Primary cultured DRG neurons with BTZ induced neurotoxicity and DRG from BTZ induced painful peripheral neuropathic rats were used to approach these questions. Results: BTZ administration caused the upregulation of ATF3 paralleled with intracellular oxidative stress, mitochondrial dysfunction, cell apoptosis, and ER stress in DRG neurons both in vitro and in vivo. Blocking ATF3 signaling by small interfering RNA (siRNA) gene silencing technology resulted in decreased intracellular oxidative stress, mitochondrial dysfunction, cell apoptosis, and ER stress in DRG neurons after BTZ treatment. This study exhibited important mechanistic insight into how BTZ induces neurotoxicity through the activation of ATF3 resulting in intracellular oxidative stress, mitochondrial dysfunction, cell apoptosis, and ER stress and provided a novel potential therapeutic target by blocking ATF3 signaling.
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