四氢吡喃衍生物与森田-贝利斯-希尔曼加合物合成16个新的杂合体:体外抗多诺瓦利什曼原虫的筛选

Suervy Canuto de Oliveira Sousa, Juliana da Câmara Rocha, Tatjana de Souza Lima Keesen, Everton da Paz Silva, P. A. C. de Assis, J. P. G. de Oliveira, S. L. Capim, F. Xavier, B. Marinho, F. P. Silva, C. Lima‐Junior, M. Vasconcellos
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引用次数: 7

摘要

利什曼病是由20多种利什曼原虫原虫寄生虫引起的一组被忽视的热带病。内脏利什曼病(VL),也称为卡拉-扎病,是利什曼病最严重的形式,95%的病例在得不到治疗时通常是致命的。Morita-Baylis-Hillman加合物(MBHAs)正被探索作为几种疾病的候选药物,其中一种是利什曼病。本文介绍了镇痛/抗炎四氢吡喃衍生物和森田-贝利斯-希尔曼加合物的16个新分子杂合体的设计、合成和体外抗多诺瓦利什曼原虫的筛选。首先,以四氢吡喃为原料,在TsOH催化下以丙烯酸为原料合成丙烯酸酯(产率70% ~ 75%)。在质子和非质子介质中分别采用微波或低温(0°C)加热,以中高收率(60%-95%)制备了16个新的mbha。通过测定其50%抑制浓度(IC50)、50%溶血浓度(HC50)、选择性指数(HC50/IC50),并与抗利什曼原虫对照药两性霉素B进行比较,在体外对多诺瓦利什曼原虫原鞭毛虫阶段进行评价。与高毒性参比药物(SIrb = 33.05)相比,化学结构中含有溴原子的杂合物在红细胞中表现出高的利什曼尼胺活性和高的选择性指数(SIrb > 180.19),表明溴杂合物是一种有前景的进一步生物学研究的化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of 16 New Hybrids from Tetrahydropyrans Derivatives and Morita-Baylis-Hillman Adducts: In Vitro Screening against Leishmania donovani
Leishmaniases are a group of neglected tropical diseases (NTDs) caused by protozoan parasites from >20 Leishmania species. Visceral leishmaniasis (VL), also known as kala-aza, is the most severe form of leishmaniasis, usually fatal in the absence of treatment in 95% of cases. The Morita-Baylis-Hillman adducts (MBHAs) are being explored as drug candidates against several diseases, one of them being leishmaniasis. We present here the design, synthesis and in vitro screening against Leishmania donovani of sixteen new molecular hybrids from analgesic/anti-inflammatory tetrahydropyrans derivatives and Morita-Baylis-Hillman adducts. First, acrylates were synthesized from analgesic/anti-inflammatory tetrahydropyrans using acrylic acid under TsOH as a catalyst (70%–75% yields). After the 16 new MBHAs were prepared in moderate to good yields (60%–95%) promoted by microwave irradiation or low temperature (0 °C) in protic and aprotic medium. The hybrids were evaluated in vitro on the promastigote stage of Leishmania donovani by determining their inhibitory concentrations 50% (IC50), 50% hemolysis concentration (HC50), selectivity index (HC50/IC50,), and comparing to Amphotericin B, chosen as the anti-leishmanial reference drug. The hybrid which presents the bromine atom in its chemical structure presents high leishmanicide activity and the high selectivity index in red blood cells (SIrb > 180.19), compared with the highly-toxic reference drug (SIrb = 33.05), indicating that the bromine hybrid is a promising compound for further biological studies.
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