Wong Chin Jessica Mélanie, Jeewon Rajesh, Fahad Alrefaei Abdulwahed, Puchooa Daneshwar, Bahorun Theeshan, Neergheen Vidushi S
Biopharmaceutical Unit, Center for Biomedical and Biomaterials Research (CBBR), University of Mauritius, Reduit, Mauritius.
Department of Agricultural and Food Science, Faculty of Agriculture, University of Mauritius, Reduit, Mauritius.
Mycology. 2024 Nov 4;16(2):545-592. doi: 10.1080/21501203.2024.2402309. eCollection 2025.
Marine fungi are promising sources of bioactive natural products. The harsh marine conditions favour the production of natural products with unique structures and functions. The different classes of bioactive metabolites produced by these marine fungi can exhibit cytotoxic, apoptotic, anti-proliferative, antiangiogenic, and autophagy inducing effects on a plethora of cancer cell lines. This review, based on research articles that have been published from 2002 to 2023, provides a concise overview of the anticancer properties of metabolites from marine fungal species. A total of 204 papers are reviewed and 208 most active cytotoxic molecules are reported from . The source as well as the growth medium utilised for the production of cytotoxic metabolites are listed. The mechanism of action of some compounds, which could be used as potential drugs, is also reported. These fungi, under optimal growth conditions, have immense potential as anticancer agents, produce novel metabolites with specific structures that can kill a panel of human cancer cells. However, there is a dire need for more clinical trials and understanding of the mechanisms of action of pharmacologically active constituent. Research should also target how to improve culture methods and perform clinical research on human subjects with more scientific reproducibility.
海洋真菌是具有生物活性的天然产物的有前途的来源。恶劣的海洋条件有利于产生具有独特结构和功能的天然产物。这些海洋真菌产生的不同类别的生物活性代谢物可对大量癌细胞系表现出细胞毒性、凋亡、抗增殖、抗血管生成和自噬诱导作用。本综述基于2002年至2023年发表的研究文章,简要概述了海洋真菌物种代谢物的抗癌特性。共综述了204篇论文,并报道了208种最具活性的细胞毒性分子。列出了用于产生细胞毒性代谢物的来源以及生长培养基。还报道了一些可用作潜在药物的化合物的作用机制。这些真菌在最佳生长条件下具有作为抗癌剂的巨大潜力,能产生具有特定结构的新型代谢物,可杀死一系列人类癌细胞。然而,迫切需要进行更多的临床试验,并了解药理活性成分的作用机制。研究还应针对如何改进培养方法,并以更科学的可重复性对人类受试者进行临床研究。