Molecular and Applied Mycology and Plant Pathology Laboratory, Department of Botany, University of Calcutta, 35, Ballygunge Circular Road, Kolkata, WB 700019, India.
CEFE, Univ Montpellier, CNRS, EPHE, IRD, Laboratory of Botany, Phytochemistry and Mycology, Faculty of Pharmacy, 15 Avenue Charles Flahault, 34093 Montpellier, France.
Fitoterapia. 2024 Jan;172:105681. doi: 10.1016/j.fitote.2023.105681. Epub 2023 Sep 22.
Resistance to apoptosis stands as a roadblock to the successful pharmacological execution of anticancer drug effect. A comprehensive insight into apoptotic signaling pathways and an understanding of the mechanisms of apoptosis resistance are crucial to unveil new drug targets. At this juncture, researchers are heading towards natural sources in particular, mushroom as their potential drugs leads to being the reliable source of potent bioactive compounds. Given the continuous increase in cancer cases, the potent anticancer efficacy of mushrooms has inevitably become a fascinating object to researchers due to their higher safety margin and multitarget. This review aimed to collect and summarize all the available scientific data on mushrooms from their extracts to bioactive molecules in order to suggest their anticancer attributes via a mitochondrion -mediated intrinsic signaling mechanism. Compiled data revealed that bioactive components of mushrooms including polysaccharides, sterols and terpenoids as well as extracts prepared using 15 different solvents from 53 species could be effective in the supportive treatment of 20 various cancers. The underlying therapeutic mechanisms of the studied mushrooms are explored in this review through diverse and complementary investigations: in vitro assays, pre-clinical studies and clinical randomized controlled trials. The processes mainly involved were ROS production, mitochondrial membrane dysfunction, and action of caspase 3, caspase 9, XIAP, cIAP, p53, Bax, and Bcl-2. In summary, the study provides facts pertaining to the potential beneficial effect of mushroom extracts and their active compounds against various types of cancer and is shedding light on the underlying targeted signaling pathways.
抗细胞凋亡是抗癌药物效应成功实施的障碍。全面了解细胞凋亡信号通路和凋亡抵抗机制对于揭示新的药物靶点至关重要。在这一时刻,研究人员特别将目光投向天然来源,特别是蘑菇,因为它们是潜在药物的可靠来源,具有强大的生物活性化合物。鉴于癌症病例不断增加,蘑菇具有强大的抗癌功效,由于其更高的安全性和多靶点,不可避免地成为研究人员关注的焦点。本综述旨在收集和总结所有关于蘑菇的可用科学数据,从其提取物到生物活性分子,以通过线粒体介导的内在信号机制来推测其抗癌特性。综合数据显示,蘑菇的生物活性成分包括多糖、甾醇和萜类化合物以及使用 15 种不同溶剂从 53 种物种中制备的提取物可能对 20 种不同癌症的辅助治疗有效。本综述通过多种互补研究探索了所研究蘑菇的潜在治疗机制:体外测定、临床前研究和临床随机对照试验。主要涉及的过程是 ROS 产生、线粒体膜功能障碍以及 caspase 3、caspase 9、XIAP、cIAP、p53、Bax 和 Bcl-2 的作用。总之,该研究提供了关于蘑菇提取物及其活性化合物对各种类型癌症的潜在有益作用的事实,并揭示了潜在的靶向信号通路。