TRPV1型
瞬时受体电位通道
化学
卡普萨平
药理学
辣椒素
耐受性
疼痛感
慢性疼痛
受体
生物化学
不利影响
医学
神经科学
生物
麻醉
作者
Wenkang Ye,Sin Tung Lui,Qirui Zhao,Yuk Ming Wong,Aifang Cheng,Herman H. Y. Sung,Ian D. Williams,Pei‐Yuan Qian,Pingbo Huang
标识
DOI:10.1016/j.ijbiomac.2023.127136
摘要
Chronic pain management poses a formidable challenge to healthcare, exacerbated by current analgesic options' limitations and adverse effects. Transient receptor potential vanilloid 1 (TRPV1), a non-selective cation channel, has emerged as a promising target for novel analgesics. However, safety and tolerability concerns have constrained the development of TRPV1 modulators. In this study, we explored marine-derived natural products as a source of potential TRPV1 modulators using high-throughput dye-uptake assays. We identified chrexanthomycins, a family of hexacyclic xanthones, exhibited potent TRPV1 inhibitory effects, with compounds cC and cF demonstrating the most significant activity. High-resolution patch-clamp assays confirmed the direct action of these compounds on the TRPV1 channel. Furthermore, in vivo assays revealed that cC and cF effectively suppressed capsaicin-induced pain sensation in mice, comparable to the known TRPV1 inhibitor, capsazepine. Structural-activity relationship analysis highlighted the importance of specific functional groups in modulating TRPV1 activity. Our findings underscore the therapeutic potential of chrexanthomycins and pave the way for further investigations into marine-derived TRPV1 modulators for pain management.
科研通智能强力驱动
Strongly Powered by AbleSci AI