细胞凋亡
线粒体
局部麻醉剂
活性氧
麻醉剂
医学
脂多糖
炎症
麻醉
药理学
药品
化学
作用机理
促炎细胞因子
炎症反应
功能(生物学)
局部麻醉
细胞
程序性细胞死亡
机制(生物学)
信号转导
作者
Haofan Wang,Yihang Hao,Wenrui Gai,Shilong Hu,Wencheng Liu,Bo Ma,Rongjia Shi,Yongzhen Tan,Ting Kang,Ao Hai,Yi Zhao,Yaling Tang,Ling Ye,Jin Liu,Xin‐hua Liang,Bowen Ke
标识
DOI:10.1016/j.apsb.2025.09.001
摘要
Local anesthetics (LAs), such as articaine (AT), exhibit limited efficacy in inflammatory environments, which constitutes a significant limitation in their clinical application within oral medicine. In our prior research, we developed AT-17, which demonstrated effective properties in chronic inflammatory conditions and appears to function as a novel oral LA that could address this challenge. In the present study, we further elucidated the beneficial effects of AT-17 in acute inflammation, particularly in oral acute inflammation, where mitochondrial-related apoptosis played a crucial role. Our findings indicated that AT-17 effectively inhibited lipopolysaccharide (LPS)-induced nerve cell apoptosis by ameliorating mitochondrial dysfunction in vitro . This process involved the inhibition of mitochondrial reactive oxygen species (mtROS) production and the subsequent activation of the NRF2 pathway. Most notably, improvements in mitochondria-related apoptosis were key contributors to AT-17's inhibition of voltage-gated sodium channels. Additionally, AT-17 was shown to reduce mtROS production in nerve cells through the Na + /NCLX/ETC signaling axis. In conclusion, we have developed a novel local anesthetic that exhibits pronounced anesthetic functionality under inflammatory conditions by enhancing mitochondria-related apoptosis. This advancement holds considerable promise for future drug development and deepening our understanding of the underlying mechanisms of action. AT-17 reduced mtROS production through the Na + /NCLX/ETC signaling axis, subsequently activated the NRF2 pathway, improved LPS-induced mitochondrial dysfunction, ultimately inhibited neuronal apoptosis, thereby enhancing its efficacy in inflammatory conditions.
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