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海洋大环内酯类药物的治疗潜力:1990 年至 2022 年的概述。

Therapeutic potential of marine macrolides: An overview from 1990 to 2022.

机构信息

Department of Pharmacy, Faculty of Pharmacy, University of Dhaka, Dhaka, 1000, Bangladesh.

Department of Chemistry, University of Swabi, Swabi, 94640, Pakistan.

出版信息

Chem Biol Interact. 2022 Sep 25;365:110072. doi: 10.1016/j.cbi.2022.110072. Epub 2022 Aug 8.

Abstract

The sea is a vast ecosystem that has remained primarily unexploited and untapped, resulting in numerous organisms. Consequently, marine organisms have piqued the interest of scientists as an abundant source of natural resources with unique structural features and fascinating biological activities. Marine macrolide is a top-class natural product with a heavily oxygenated polyene backbone containing macrocyclic lactone. In the last few decades, significant efforts have been made to isolate and characterize macrolides' chemical and biological properties. Numerous macrolides are extracted from different marine organisms such as marine microorganisms, sponges, zooplankton, molluscs, cnidarians, red algae, tunicates, and bryozoans. Notably, the prominent macrolide sources are fungi, dinoflagellates, and sponges. Marine macrolides have several bioactive characteristics such as antimicrobial (antibacterial, antifungal, antimalarial, antiviral), anti-inflammatory, antidiabetic, cytotoxic, and neuroprotective activities. In brief, marine organisms are plentiful in naturally occurring macrolides, which can become the source of efficient and effective therapeutics for many diseases. This current review summarizes these exciting and promising novel marine macrolides in biological activities and possible therapeutic applications.

摘要

海洋是一个广阔的生态系统,主要未被开发和利用,其中有许多生物。因此,海洋生物作为一种具有独特结构特征和迷人生物活性的天然资源丰富的来源,引起了科学家的兴趣。海洋大环内酯是一种具有高度氧化多烯骨架的顶级天然产物,含有大环内酯。在过去的几十年中,人们做出了巨大的努力来分离和表征大环内酯的化学和生物学特性。从海洋微生物、海绵、浮游动物、软体动物、刺胞动物、红藻、被囊动物和苔藓动物等不同海洋生物中提取了许多大环内酯。值得注意的是,主要的大环内酯来源是真菌、甲藻和海绵。海洋大环内酯具有多种生物活性特性,如抗菌(抗细菌、抗真菌、抗疟疾、抗病毒)、抗炎、抗糖尿病、细胞毒性和神经保护活性。简而言之,海洋生物中含有丰富的天然大环内酯,这些大环内酯可能成为许多疾病高效、有效的治疗方法的来源。本综述总结了这些具有令人兴奋和广阔前景的新型海洋大环内酯的生物活性和潜在的治疗应用。

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