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有效绿色方法合成查耳酮的驱虫活性。

Potent Anthelmintic Activity of Chalcones Synthesized by an Effective Green Approach.

机构信息

INIBIBB (CONICET-UNS), Departamento de Biología, Bioquímica y Farmacia, Universidad Nacional del Sur, Camino La Carrindanga km 7, 8000, Bahía Blanca, Argentina.

INQUISUR (CONICET-UNS), Departamento de Química, Universidad Nacional del Sur, Avenida Alem 1253, 8000, Bahía Blanca, Argentina.

出版信息

ChemMedChem. 2024 Jul 2;19(13):e202400071. doi: 10.1002/cmdc.202400071. Epub 2024 May 6.

DOI:10.1002/cmdc.202400071
PMID:38573571
Abstract

There is currently an urgent need for new anthelmintic agents due to increasing resistance to the limited available drugs. The chalcone scaffold is a privileged structure for developing new drugs and has been shown to exhibit potential antiparasitic properties. We synthesized a series of chalcones via Claisen-Schmidt condensation, introducing a novel recoverable catalyst derived from biochar obtained from the pyrolysis of tree pruning waste. Employing microwave irradiation and a green solvent, this approach demonstrated significantly reduced reaction times and excellent compatibility with various functional groups. The result was the generation of a library of functionalized chalcones, exhibiting exclusive (E)-selectivity and high to excellent yields. The chalcone derivatives were evaluated on the free-living nematode Caenorhabditis elegans. The chalcone scaffold, along with two derivatives incorporating a methoxy substituent in either ring, caused a concentration-dependent decrease of worm motility, revealing potent anthelmintic activity and spastic paralysis not mediated by the nematode levamisole-sensitive nicotinic receptor. The combination of both methoxy groups in the chalcone scaffold resulted in a less potent compound causing worm hypermotility at the short term, indicating a distinct molecular mechanism. Through the identification of promising drug candidates, this work addresses the demand for new anthelmintic drugs while promoting sustainable chemistry.

摘要

由于现有药物的耐药性不断增加,目前迫切需要新的驱虫药。查尔酮结构是开发新药的一种优势结构,已显示出具有潜在的抗寄生虫特性。我们通过 Claisen-Schmidt 缩合反应合成了一系列查尔酮,引入了一种新型可回收的催化剂,该催化剂来源于树木修剪废物热解得到的生物炭。该方法采用微波辐射和绿色溶剂,反应时间明显缩短,与各种官能团的兼容性也很好。结果生成了一系列功能化的查尔酮,具有独特的(E)选择性和较高至优异的产率。查尔酮衍生物在自由生活的线虫秀丽隐杆线虫上进行了评估。查尔酮骨架以及两个在任一环中含有甲氧基取代基的衍生物会导致线虫运动能力呈浓度依赖性下降,表现出有效的驱虫活性和痉挛性麻痹,这不是由线虫左旋咪唑敏感烟碱受体介导的。查尔酮骨架中两个甲氧基的结合导致短期worms 过度运动的化合物活性降低,表明存在不同的分子机制。通过鉴定有前途的候选药物,这项工作满足了对新驱虫药的需求,同时促进了可持续化学的发展。

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