过度活跃
自噬
顺铂
TRPV1型
癌症研究
分泌物
细胞生物学
药理学
医学
化学
生物
化疗
瞬时受体电位通道
内科学
生物化学
受体
细胞凋亡
作者
Se Jin Oh,Ji Yeon Lim,Min Kyu Son,Jun Hyeok Ahn,Kwon‐Ho Song,Hyo‐Jung Lee,Suyeon Kim,Eunho Cho,Joon‐Yong Chung,Hanbyoul Cho,Hyosun Kim,Jae‐Hoon Kim,Jooyoung Park,Jungmin Choi,Sun Wook Hwang,Tae Woo Kim
标识
DOI:10.1038/s41467-023-38318-7
摘要
Abstract Cisplatin resistance along with chemotherapy-induced neuropathic pain is an important cause of treatment failure for many cancer types and represents an unmet clinical need. Therefore, future studies should provide evidence regarding the mechanisms of potential targets that can overcome the resistance as well as alleviate pain. Here, we show that the emergence of cisplatin resistance is highly associated with EGFR hyperactivation, and that EGFR hyperactivation is arisen by a transcriptional increase in the pain-generating channel, TRPV1, via NANOG. Furthermore, TRPV1 promotes autophagy-mediated EGF secretion via Ca 2+ influx, which activates the EGFR-AKT signaling and, consequentially, the acquisition of cisplatin resistance. Importantly, TRPV1 inhibition renders tumors susceptible to cisplatin. Thus, our findings indicate a link among cisplatin resistance, EGFR hyperactivation, and TRPV1-mediated autophagic secretion, and implicate that TRPV1 could be a crucial drug target that could not only overcome cisplatin resistance but also alleviate pain in NANOG + cisplatin-resistant cancer.
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