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基于常见生物来源前体的肉桂酰化、苄基化和异戊烯基化二氢查耳酮的半合成及生物学评价

Hemisynthesis and Biological Evaluation of Cinnamylated, Benzylated, and Prenylated Dihydrochalcones from a Common Bio-Sourced Precursor.

作者信息

Ardaillou Anne, Alsarraf Jérôme, Legault Jean, Simard François, Pichette André

机构信息

Centre de Recherche sur la Boréalie (CREB), Laboratoire d'Analyse et de Séparation des Essences Végétales (LASEVE), Université du Québec à Chicoutimi, 555 Boulevard de l'Université, Chicoutimi, QC G7H 2B1, Canada.

出版信息

Antibiotics (Basel). 2021 May 22;10(6):620. doi: 10.3390/antibiotics10060620.

Abstract

Several families of naturally occurring -alkylated dihydrochalcones display a broad range of biological activities, including antimicrobial and cytotoxic properties, depending on their alkylation sidechain. The catalytic Friedel-Crafts alkylation of the readily available aglycon moiety of neohesperidin dihydrochalcone was performed using cinnamyl, benzyl, and isoprenyl alcohols. This procedure provided a straightforward access to a series of derivatives that were structurally related to natural balsacones, uvaretin, and erioschalcones, respectively. The antibacterial and cytotoxic potential of these novel analogs was evaluated in vitro and highlighted some relations between the structure and the pharmacological properties of alkylated dihydrochalcones.

摘要

几种天然存在的α-烷基化二氢查耳酮家族表现出广泛的生物活性,包括抗菌和细胞毒性特性,这取决于它们的烷基化侧链。使用肉桂醇、苄醇和异戊二烯醇对新橙皮苷二氢查耳酮易于获得的苷元部分进行催化傅克烷基化反应。该方法为一系列分别与天然香豆酮、uvaretin和毛叶查耳酮结构相关的衍生物提供了直接的合成途径。对这些新型类似物的抗菌和细胞毒性潜力进行了体外评估,并突出了烷基化二氢查耳酮的结构与药理性质之间的一些关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a8d/8224620/f90a5a685b46/antibiotics-10-00620-g001.jpg

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