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蕨类植物的化学多样性及潜在健康促进作用洞察

Insights into Chemical Diversity and Potential Health-Promoting Effects of Ferns.

作者信息

Moussa Ashaimaa Y, Luo Jinhai, Xu Baojun

机构信息

Department of Pharmacognosy, Faculty of Pharmacy, Ain Shams University, Abbassia, Cairo 11566, Egypt.

Food Science and Technology Program, Department of Life Sciences, BNU-HKBU United International College, 2000 Jintong Road, Tangjiawan, Zhuhai 519087, China.

出版信息

Plants (Basel). 2024 Sep 23;13(18):2668. doi: 10.3390/plants13182668.

Abstract

The scientific community is focusing on how to enhance human health and immunity through functional foods, and dietary supplements are proven to have a positive as well as a protective effect against infectious and chronic diseases. Ferns act as a taxonomical linkage between higher and lower plants and are endowed with a wide chemical diversity not subjected to sufficient scrutinization before. Even though a wealth of traditional medicinal fern uses were recorded in Chinese medicine, robust phytochemical and biological investigations of these plants are lacking. Herein, an extensive search was conducted using the keywords ferns and compounds, ferns and NMR, ferns and toxicity, and the terms ferns and chemistry, lignans, , NMR, isolation, bioactive compounds, terpenes, phenolics, phloroglucinols, monoterpenes, alkaloids, phenolics, and fatty acids were utilized with the Boolean operators AND, OR, and NOT. Databases such as PubMed, Web of Science, Science Direct, Scopus, Google Scholar, and Reaxys were utilized to reveal a wealth of information regarding fern chemistry and their health-promoting effects. Terpenes followed by phenolics represented the largest number of isolated active compounds. Regarding the neuroprotective effects, , Polypodium, and Dryopteris species possessed as their major phenolics component unique chemical moieties including catechins, procyanidins, and bioflavonoids. In this updated chemical review, the pharmacological and chemical aspects of ferns are compiled manifesting their chemical diversity in the last seven years (2017-2024) together with a special focus on their nutritive and potential health-promoting effects.

摘要

科学界正专注于如何通过功能性食品增强人类健康和免疫力,事实证明膳食补充剂对传染病和慢性病具有积极的保护作用。蕨类植物是高等植物和低等植物之间的分类学联系,具有广泛的化学多样性,此前未受到充分审查。尽管中医记载了大量传统药用蕨类植物的用途,但对这些植物缺乏深入的植物化学和生物学研究。在此,使用关键词“蕨类植物和化合物”“蕨类植物和核磁共振”“蕨类植物和毒性”进行了广泛搜索,并使用布尔运算符AND、OR和NOT将术语“蕨类植物和化学”“木脂素”“核磁共振”“分离”“生物活性化合物”“萜类化合物”“酚类化合物”“间苯三酚”“单萜类化合物”“生物碱”“酚类化合物”和“脂肪酸”结合起来使用。利用PubMed、科学网、科学Direct、Scopus、谷歌学术和Reaxys等数据库揭示了大量关于蕨类植物化学及其促进健康作用的信息。萜类化合物之后是酚类化合物,它们是分离出的活性化合物中数量最多的。关于神经保护作用,水龙骨属、鳞毛蕨属植物作为其主要酚类成分,具有包括儿茶素、原花青素和生物类黄酮在内的独特化学基团。在这篇更新的化学综述中,汇编了蕨类植物的药理学和化学方面的内容,展示了它们在过去七年(2017 - 2024年)的化学多样性,并特别关注它们的营养和潜在的促进健康作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a491/11434777/da3ed0bfa75f/plants-13-02668-g001.jpg

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