Li Xin Ping, Shen Wen Hao, Wang Jian Wen, Zheng Li Ping
College of Pharmaceutical Sciences, Soochow University, Suzhou, China.
Department of Horticultural Sciences, Gold Mantis School of Architecture, Soochow University, Suzhou, China.
Mycology. 2024 Dec 13;16(2):593-616. doi: 10.1080/21501203.2024.2430726. eCollection 2025.
Hypocrellins, a group of naturally occurring perylenequinone pigments produced by , are notable for their potential use in photodynamic therapy (PDT) for treating cancers and viruses. Traditionally, hypocrellins have been extracted from the fruiting bodies of , a parasitic fungus on bamboo. However, the yield from wild fruiting bodies is often insufficient, prompting a shift towards seeking other fungi with higher yields of hypocrellins as alternative sources. This review comprehensively examines the current research on the isolation, identification, and bioactivity of fungal perylenequinones from isolates from ascostromata or fruiting bodies, -like endophytes, and other endophytes from bamboos. Additionally, the review discusses the culture methods and conditions for solid-state and submerged fermentation of hypocrellin-producing fungi, including medium components, culture conditions, and optimisation of fermentation factors, as mycelium cultures have emerged as a promising alternative for the production of hypocrellins. Furthermore, novel elicitation strategies are presented to address the bottleneck of lower production of hypocrellins in mycelium cultures, focusing on the preparation, characterisation, and application of biotic and abiotic elicitors. This review aims to facilitate further exploration and utilisation of fungal resources and elicitation strategies for enhanced production of hypocrellins in mycelium cultures.
竹红菌素是由[未提及的真菌]产生的一组天然存在的苝醌类色素,因其在光动力疗法(PDT)治疗癌症和病毒方面的潜在用途而备受关注。传统上,竹红菌素是从竹黄(一种寄生于竹子的真菌)的子实体中提取的。然而,野生竹黄子实体的产量往往不足,促使人们转向寻找其他竹红菌素产量更高的真菌作为替代来源。本综述全面考察了目前关于从子囊壳或子实体分离株、类内生真菌以及竹子的其他内生真菌中分离、鉴定真菌苝醌及其生物活性的研究。此外,该综述还讨论了产竹红菌素真菌固态发酵和深层发酵的培养方法和条件,包括培养基成分、培养条件以及发酵因子的优化,因为菌丝体培养已成为生产竹红菌素的一种有前景的替代方法。此外,还提出了新的诱导策略来解决菌丝体培养中竹红菌素产量较低的瓶颈问题,重点关注生物和非生物诱导剂的制备、表征及应用。本综述旨在促进对真菌资源的进一步探索和利用,以及采用诱导策略提高菌丝体培养中竹红菌素的产量。