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红树植物及其分离化合物在医药方面的生物技术应用——机制概述。

Biotechnological applications of mangrove plants and their isolated compounds in medicine-a mechanistic overview.

机构信息

Department of Health Sciences, Faculty of Medicine and Health Sciences, University of Mauritius, Réduit, Mauritius.

Department of Biology, Science Faculty, Selcuk University, Konya, Turkey.

出版信息

Crit Rev Biotechnol. 2023 May;43(3):393-414. doi: 10.1080/07388551.2022.2033682. Epub 2022 Mar 13.

Abstract

Mangrove plants, also known as halophytes, are ecologically important plants that grow in various tropical and subtropical intertidal regions. Owing to the extreme abiotic and biotic stressful conditions they thrive in, these plants produce unique compounds with promising pharmacological propensities. Mangroves are inhabited by an astronomical number of fungal communities which produce a diverse array of extracellular degradative enzymes, namely: amylase, cellulase, xylanase, pectinase, cholesterol oxidase, etc. Such enzymes can be isolated from the mangrove fungi and harnessed for different biotechnological applications, for example, as replacements for chemical catalysts. Mangrove microbes attract considerable attention as they shelter the largest group of marine microorganisms that are resistant to extreme conditions and can produce novel biogenic substances. Vaccines developed from mangrove microbes may promise a safe future by developing effective immunization procedures with a minimum of economic burden. Interestingly, mangroves offer an exciting opportunity for synthesizing nanoparticles in a greener way as these plants are naturally rich in phytochemicals. Lam., L. and L. are capable of synthesizing nanoparticles which have evolved recently as an alternative in various industries and are used for their biomedical application. Besides, the phytoconstituents isolated from mangrove plants, such as: gallic acid, galactose, lupeol, catechins, carotenoids, etc., were explored for various biological activities. These compounds are used in the pharmaceutical and nutraceutical industries to produce antimicrobial, antioxidant, anticancer, antidiabetic, and other therapeutic agents. The present review provides information on the biotechnological potentials of mangrove plants and their bioactive compounds as a new source of novel drugs, enzymes, nanoparticles and therapeutically important microbial pigments. Thus, this review forms a base of support and hasten the urgent research on biomedical applications of mangroves.

摘要

红树林植物,也被称为盐生植物,是生长在各种热带和亚热带潮间带地区的具有重要生态意义的植物。由于它们在极端的非生物和生物胁迫条件下茁壮成长,这些植物产生了具有有前途的药理学倾向的独特化合物。红树林中栖息着数量庞大的真菌群落,这些真菌产生了各种各样的细胞外降解酶,如:淀粉酶、纤维素酶、木聚糖酶、果胶酶、胆固醇氧化酶等。这些酶可以从红树林真菌中分离出来,并用于不同的生物技术应用,例如,作为化学催化剂的替代品。红树林微生物引起了相当大的关注,因为它们庇护了最大的一组对极端条件具有抗性的海洋微生物,并能产生新的生物物质。从红树林微生物中开发的疫苗通过开发具有最小经济负担的有效免疫程序,可能会有一个安全的未来。有趣的是,红树林为以更环保的方式合成纳米粒子提供了一个令人兴奋的机会,因为这些植物天然富含植物化学物质。Lam.、L. 和 L. 能够合成纳米粒子,这些纳米粒子最近作为各种工业的替代物而出现,并且因其在生物医学中的应用而得到使用。此外,从红树林植物中分离出的植物化学成分,如:没食子酸、半乳糖、羽扇豆醇、儿茶素、类胡萝卜素等,也被探索用于各种生物活性。这些化合物被用于制药和营养保健品行业,以生产抗菌、抗氧化、抗癌、抗糖尿病等治疗剂。本综述提供了有关红树林植物及其生物活性化合物作为新型药物、酶、纳米粒子和治疗上重要的微生物色素的生物技术潜力的信息。因此,本综述为支持和加速对红树林的生物医学应用的迫切研究提供了基础。

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