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多样的宿主相关真菌系统作为药物发现中新型生物活性蒽醌类化合物的动态来源:现状与展望。

Diverse host-associated fungal systems as a dynamic source of novel bioactive anthraquinones in drug discovery: Current status and future perspectives.

机构信息

Laboratory of Phytochemistry, National Organization for Drug Control and Research, Cairo, Egypt.

Pharmacognosy Department, Faculty of Pharmacy, Cairo University, Cairo, Egypt.

出版信息

J Adv Res. 2022 Jul;39:257-273. doi: 10.1016/j.jare.2021.11.007. Epub 2021 Nov 22.

Abstract

BACKGROUND

Despite, a large number of bioactive anthraquinones (AQs) isolated from host-living fungi, only plant-derived AQs were introduced in the global consumer markets. Host-living fungi represents renewable and extendible resources of diversified metabolites to be exploited for bioactives production. Unique classes of AQs from fungi include halogenated and steroidal AQs, and absent from planta are of potential to explore for biological activity against urging diseases such as cancer and multidrug-resistant pathogens. The structural diversity of fungal AQs, monomers, dimers, trimers, halogenated, etc… results in a vast range of pharmacological activities.

AIM OF REVIEW

The current study capitalizes on uncovering the diversity and distribution of host-living fungal systems producing AQs in different terrestrial ecosystems ranging from plant endophytes, lichens, animals and insects. Furthermore, the potential bioactivities of fungal derived AQs i.e., antibacterial, antifungal, antiviral (anti-HIV), anticancer, antioxidant, diuretic and laxative activities are assembled in relation to their structure activity relationship (SAR). Analyzing for structure-activity relationship among fungal AQs may facilitate bioengineering of more potential analogues. Withal, elucidation of AQs biosynthetic pathways in fungi is discussed from different fungal hosts to open up new possibilities for potential biotechnological applications. Such comprehensive review unravels terrestrial host-living fungal systems as a treasure trove in drug discovery, in addition to future perspectives and trends for their exploitation in pharmaceutical industries.

KEY SCIENTIFIC CONCEPTS OF REVIEW

Such comprehensive review unravels terrestrialhost-living fungal systems as a treasure trove in drug discovery, in addition to future perspectives and trends for their exploitation in pharmaceutical industries.

摘要

背景

尽管从宿主共生真菌中分离出了大量的生物活性蒽醌(AQs),但只有植物来源的 AQs 被引入全球消费市场。宿主共生真菌代表了可再生和可扩展的多样化代谢产物资源,可用于生物活性物质的生产。真菌中独特的 AQ 类包括卤化和甾体 AQs,而植物中不存在的 AQs 具有探索针对癌症和多药耐药病原体等紧迫疾病的生物活性的潜力。真菌 AQs 的结构多样性,单体、二聚体、三聚体、卤化等,导致了广泛的药理活性。

目的综述

本研究旨在揭示不同陆地生态系统中产生 AQs 的宿主共生真菌系统的多样性和分布,包括植物内生真菌、地衣、动物和昆虫。此外,还总结了真菌来源的 AQs 的潜在生物活性,如抗菌、抗真菌、抗 HIV、抗癌、抗氧化、利尿和通便活性,并与其结构活性关系(SAR)相关联。分析真菌 AQs 的结构活性关系可能有助于生物工程更多潜在类似物。此外,还从不同的真菌宿主中讨论了 AQs 的生物合成途径,为潜在的生物技术应用开辟了新的可能性。这种全面的综述揭示了陆地宿主共生真菌系统是药物发现的宝库,此外还展望了它们在制药行业中的未来前景和趋势。

综述的关键科学概念

这种全面的综述揭示了陆地宿主共生真菌系统是药物发现的宝库,此外还展望了它们在制药行业中的未来前景和趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccbb/9263761/e4578934b471/ga1.jpg

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