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来自与水生动物相关的微生物共生体的抗真菌化合物及其细胞靶点:综述

Antifungal Compounds from Microbial Symbionts Associated with Aquatic Animals and Cellular Targets: A Review.

作者信息

Ngo-Mback Madeleine Nina Love, Zeuko'o Menkem Elisabeth, Marco Heather G

机构信息

Institute of Fisheries and Aquatic Science, University of Douala, Douala P.O. Box 2701, Cameroon.

Department of Biomedical Sciences, University of Buea, Buea P.O. Box 63, Cameroon.

出版信息

Pathogens. 2023 Apr 18;12(4):617. doi: 10.3390/pathogens12040617.

Abstract

Fungal infections continue to be a serious public health problem, leading to an estimated 1.6 million deaths annually. It remains a major cause of mortality for people with a weak or affected immune system, such as those suffering from cancer under aggressive chemotherapies. On the other hand, pathogenic fungi are counted among the most destructive factors affecting crops, causing a third of all food crop losses annually and critically affecting the worldwide economy and food security. However, the limited number currently available and the cytotoxicity of the conventional antifungal drugs, which are not yet properly diversified in terms of mode of action, in addition to resistance phenomena, make the search for new antifungals imperative to improve both human health and food protection. Symbiosis has been a crucial alternative for drug discovery, through which many antimicrobials have been discovered. This review highlights some antifungal models of a defensive symbiosis of microbial symbiont natural products derived from interacting with aquatic animals as one of the best opportunities. Some recorded compounds with supposed novel cell targets such as apoptosis could lead to the development of a multitherapy involving the mutual treatment of fungal infections and other metabolic diseases involving apoptosis in their pathogenesis pathways.

摘要

真菌感染仍然是一个严重的公共卫生问题,估计每年导致160万人死亡。对于免疫系统薄弱或受影响的人,如正在接受积极化疗的癌症患者,它仍然是主要的死亡原因。另一方面,致病真菌是影响农作物的最具破坏性的因素之一,每年造成所有粮食作物损失的三分之一,严重影响全球经济和粮食安全。然而,目前可用的传统抗真菌药物数量有限,且细胞毒性大,其作用方式尚未得到充分多样化,再加上耐药现象,使得寻找新的抗真菌药物对于改善人类健康和粮食保护至关重要。共生一直是药物发现的关键替代途径,通过它已经发现了许多抗菌药物。本综述重点介绍了作为最佳机会之一的、源自与水生动物相互作用的微生物共生体天然产物防御性共生的一些抗真菌模型。一些记录在案的具有假定新细胞靶点(如细胞凋亡)的化合物可能会导致开发一种多疗法,用于同时治疗真菌感染和其他在发病机制途径中涉及细胞凋亡的代谢疾病。

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Int J Antimicrob Agents. 2022 Jan;59(1):106477. doi: 10.1016/j.ijantimicag.2021.106477. Epub 2021 Nov 17.
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3
The Surfactin-Like Lipopeptides From spp.: Natural Biodiversity and Synthetic Biology for a Broader Application Range.
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4
Current Antimycotics, New Prospects, and Future Approaches to Antifungal Therapy.
Antibiotics (Basel). 2020 Jul 25;9(8):445. doi: 10.3390/antibiotics9080445.
5
Role of symbiosis in the discovery of novel antibiotics.
J Antibiot (Tokyo). 2020 Aug;73(8):490-503. doi: 10.1038/s41429-020-0321-6. Epub 2020 Jun 4.
6
Antifungal Peptides as Therapeutic Agents.
Front Cell Infect Microbiol. 2020 Mar 17;10:105. doi: 10.3389/fcimb.2020.00105. eCollection 2020.
7
Human Relationships with Domestic and Other Animals: One Health, One Welfare, One Biology.
Animals (Basel). 2019 Dec 24;10(1):43. doi: 10.3390/ani10010043.
9
Synthesis and synergistic studies of isatin based mixed ligand complexes as potential antifungal therapeutic agents.
Heliyon. 2019 Jul 17;5(7):e02055. doi: 10.1016/j.heliyon.2019.e02055. eCollection 2019 Jul.
10
Effects of tyrosol and farnesol on Candida albicans biofilm.
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