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Structure-Based Virtual Screening and In Vitro Evaluation of New Trypanosoma cruzi Cruzain Inhibitors

机译:基于结构的虚拟筛选和新的克氏锥虫CruzAIN抑制剂的体外评价

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摘要

Chagas disease (CD), or American trypanosomiasis, causes more than 10,000 deaths per year in the Americas. Current medical therapy for CD has low efficacy in the chronic phase of the disease and serious adverse effects; therefore, it is necessary to search for new pharmacological treatments. In this work, the ZINC15 database was filtered using the N-acylhydrazone moiety and a subsequent structure-based virtual screening was performed using the cruzain enzyme of Trypanosoma cruzi to predict new potential cruzain inhibitors. After a rational selection process, four compounds, Z2 (ZINC9873043), Z3 (ZINC9870651), Z5 (ZINC9715287), and Z6 (ZINC9861447), were chosen to evaluate their in vitro trypanocidal activity and enzyme inhibition. Compound Z5 showed the best trypanocidal activity against epimatigote (IC50 = 36.26 ± 9.9 μM) and trypomastigote (IC50 = 166.21 ± 14.5 μM and 185.1 ± 8.5 μM on NINOA and INC-5 strains, respectively) forms of Trypanosoma cruzi. In addition, Z5 showed a better inhibitory effect on Trypanosoma cruzi proteases than S1 (STK552090, 8-chloro-N-(3-morpholinopropyl)-5H-pyrimido[5,4-b]-indol-4-amine), a known cruzain inhibitor. This study encourages the use of computational tools for the rational search for trypanocidal drugs.
机译:美洲锥虫病(CD)或美国锥虫病每年在美洲造成10,000多人死亡。目前的CD药物治疗在疾病的慢性阶段疗效低下,且副作用严重。因此,有必要寻找新的药物治疗方法。在这项工作中,使用N-酰基hydr部分过滤了ZINC 15 数据库,随后使用克氏锥虫的克鲁萨因酶进行了基于结构的虚拟筛选,以预测新的潜在克鲁萨因抑制剂。经过合理的选择过程后,选择了四个化合物Z2(ZINC9873043),Z3(ZINC9870651),Z5(ZINC9715287)和Z6(ZINC9861447)来评估其体外杀锥虫活性和酶抑制作用。化合物Z5对淫羊Try形式的Epimatigote(IC50 = 36.26±9.9μM)和锥虫鞭虫(IC50 = 166.21±14.5μM和185.1±8.5μM)表现出最佳的杀锥虫活性。此外,Z5对克鲁斯锥虫蛋白酶的抑制作用比S1(STK552090,8-氯-N-(3-吗啉代丙基)-5H-嘧啶[5,4-b]-吲哚-4-胺)更好。克鲁萨因抑制剂。这项研究鼓励使用计算工具合理地寻找锥虫病药物。

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