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Synthesis of aminophenylhydroxamate and aminobenzylhydroxamate derivatives and in vitro screening for antiparasitic and histone deacetylase inhibitory activity

机译:氨基苯基羟胺和氨基苄基羟胺衍生物的合成及体外筛选抗遗传性和组蛋白脱乙酰酶抑制活性

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摘要

A series of aminophenylhydroxamates and aminobenzylhydroxamates were synthesized and screened for their antiparasitic activity against Leishmania, Trypanosoma, and Toxoplasma. Their anti-histone deacetylase (HDAC) potency was determined. Moderate to no antileishmanial or antitrypanosomal activity was found (IC50 > 10 μM) that contrast with the highly efficient anti-Toxoplasma activity (IC50 < 1.0 μM) of these compounds. The antiparasitic activity of the synthetized compounds correlates well with their HDAC inhibitory activity. The best-performing compound (named 363) express a high anti-HDAC6 inhibitory activity (IC50 of 0.045 ± 0.015 μM) a moderate cytotoxicity and a high anti-Toxoplasma activity in the range of known anti-Toxoplasma compounds (IC50 of 0.35–2.25 μM). The calculated selectivity index (10–300 using different human cell lines) of the compound 363 makes it a lead compound for the future development of anti-Toxoplasma molecules.
机译:合成了一系列氨基苯基羟胺和氨基苄基羟肟酸盐,并筛选其对Leishmania,脑蛋白酶体和弓形虫的抗遗传性活性。测得其抗组蛋白脱乙酰化酶(HDAC)效力。发现中等至无抗抗糖蛋白酶体(IC 50>10μm),与这些化合物的高效抗毒素活性(IC50 <1.0μm)形成对比。合成化合物的抗遗传性活性与其HDAC抑制活性良好相关。最佳性能的化合物(命名为363)表达高抗HDAC6抑制活性(IC50为0.045±0.015μm)中等细胞毒性和高抗致弓形虫活性,在已知的抗致毒素化合物的范围内(IC50为0.35-2.25 μm)。化合物363的计算的选择性指数(10-300使用不同人细胞系)使其成为未来抗致弓形分子的开发的铅化合物。

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