Mlost Jakub, Kędziora Marta, Starowicz Katarzyna
Department of Neurochemistry, Maj Institute of Pharmacology, Polish Academy of Sciences, Smętna 12, 31-343 Cracow, Poland.
Pharmaceuticals (Basel). 2021 Sep 24;14(10):964. doi: 10.3390/ph14100964.
Systems pharmacology employs computational and mathematical methods to study the network of interactions a drug may have within complex biological pathways. These tools are well suited for research on multitarget drugs, such as natural compounds, in diseases with complex etiologies, such as osteoarthritis (OA). The present study focuses on cannabidiol (CBD), a non-psychoactive constituent of cannabis, targeting over 60 distinct molecular targets as a potential treatment for OA, a degenerative joint disease leading to chronic pain with a neuropathic component. We successfully identified molecular targets of CBD that were relevant in the context of OA treatment with both beneficial and detrimental effects. Our findings were confirmed by in vivo and molecular studies. A key role of PPARγ in mediating the therapeutic potential of CBD was revealed, whereas upregulation of multiple transient receptor potential channels demasked CBD-induced heat hyperalgesia. Our findings pave the way for novel CBD-based therapy with improved therapeutic potential but also encourage the use of bioinformatic tools to predict the mechanism of action of CBD in different conditions. We have also created an accessible web tool for analogous analysis of CBD pharmacology in the context of any disease of interest and made it publicly available.
系统药理学采用计算和数学方法来研究药物在复杂生物途径中可能具有的相互作用网络。这些工具非常适合用于研究多靶点药物,如天然化合物,以及病因复杂的疾病,如骨关节炎(OA)。本研究聚焦于大麻二酚(CBD),一种大麻中的非精神活性成分,它作为OA(一种导致伴有神经病变成分的慢性疼痛的退行性关节疾病)的潜在治疗方法,可作用于60多个不同的分子靶点。我们成功鉴定出了CBD在OA治疗背景下相关的分子靶点,这些靶点既有有益作用也有有害作用。我们的发现通过体内和分子研究得到了证实。揭示了PPARγ在介导CBD治疗潜力中的关键作用,而多种瞬时受体电位通道的上调则掩盖了CBD诱导的热痛觉过敏。我们的发现为具有更高治疗潜力的新型基于CBD的疗法铺平了道路,同时也鼓励使用生物信息学工具来预测CBD在不同情况下的作用机制。我们还创建了一个便于使用的网络工具,用于在任何感兴趣的疾病背景下对CBD药理学进行类似分析,并将其公开提供。