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从植物大麻素和内源性大麻素的生理及病理生理作用角度看其抗菌活性

Anti-Microbial Activity of Phytocannabinoids and Endocannabinoids in the Light of Their Physiological and Pathophysiological Roles.

作者信息

Sionov Ronit Vogt, Steinberg Doron

机构信息

The Biofilm Laboratory, The Institute of Biomedical and Oral Sciences, The Faculty of Dentistry, The Hebrew University-Hadassah Medical School, Jerusalem 9112102, Israel.

出版信息

Biomedicines. 2022 Mar 9;10(3):631. doi: 10.3390/biomedicines10030631.

Abstract

Antibiotic resistance has become an increasing challenge in the treatment of various infectious diseases, especially those associated with biofilm formation on biotic and abiotic materials. There is an urgent need for new treatment protocols that can also target biofilm-embedded bacteria. Many secondary metabolites of plants possess anti-bacterial activities, and especially the phytocannabinoids of the L. varieties have reached a renaissance and attracted much attention for their anti-microbial and anti-biofilm activities at concentrations below the cytotoxic threshold on normal mammalian cells. Accordingly, many synthetic cannabinoids have been designed with the intention to increase the specificity and selectivity of the compounds. The structurally unrelated endocannabinoids have also been found to have anti-microbial and anti-biofilm activities. Recent data suggest for a mutual communication between the endocannabinoid system and the gut microbiota. The present review focuses on the anti-microbial activities of phytocannabinoids and endocannabinoids integrated with some selected issues of their many physiological and pharmacological activities.

摘要

抗生素耐药性已成为治疗各种传染病日益严峻的挑战,尤其是那些与生物和非生物材料上生物膜形成相关的传染病。迫切需要能够靶向生物膜内细菌的新治疗方案。植物的许多次生代谢产物具有抗菌活性,特别是L.品种的植物大麻素已再度兴起,并因其在低于正常哺乳动物细胞细胞毒性阈值的浓度下具有抗菌和抗生物膜活性而备受关注。因此,人们设计了许多合成大麻素,以提高化合物的特异性和选择性。结构不相关的内源性大麻素也被发现具有抗菌和抗生物膜活性。最近的数据表明内源性大麻素系统与肠道微生物群之间存在相互交流。本综述重点关注植物大麻素和内源性大麻素的抗菌活性,并结合了它们许多生理和药理活性中的一些选定问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6945/8945038/303322fd54bb/biomedicines-10-00631-g001.jpg

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