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N-(3-三氟乙酰基-吲哚-7-基)乙酰胺的合成及其潜在体外抗疟特性评估

Synthesis and Evaluation of N-(3-Trifluoroacetyl-indol-7-yl) Acetamides for Potential In Vitro Antiplasmodial Properties.

作者信息

Mphahlele Malose J, Mmonwa Mmakwena M, Choong Yee Siew

机构信息

Department of Chemistry, College of Science, Engineering and Technology, University of South Africa, Private Bag X06, Florida 1710, South Africa.

Institute for Research in Molecular Medicine (INFORMM), Universiti Sains Malaysia, 11800 Minden, Penang, Malaysia.

出版信息

Molecules. 2017 Jul 2;22(7):1099. doi: 10.3390/molecules22071099.

Abstract

A series of novel -((2,5-diaryl-3-trifluoroacetyl)-1-indol-7-yl)acetamides has been prepared via a successive and one-pot reaction sequence involving initial trifluoroacetic acid-mediated Beckmann rearrangement of the oximes derived from the 1-(2,5-diaryl-1-indol-7-yl)ethanones, followed by trifluoroacetylation of the incipient -(2,5-diaryl-1-indol-7-yl)-acetamides with trifluoroacetic anhydride. The prepared compounds were evaluated for potential in vitro antiplasmodial properties. Preliminary results from antiplasmodial activity against the chloroquine-sensitive 3D7 strain of revealed that a combination of 2-(4-flurophenyl)- and 5-(4-fluorophenyl) or 2-(4-flurophenyl)- and 4-fluorostyryl groups in compounds (,) and (,), for example, is required for biological activity for both series of compounds. Their possible mode of action against the plasmodial parasite is explained theoretically through molecular docking of the most active compounds against the parasite lactate dehydrogenase (pLDH). These compounds were docked at the entrance of NAD+ in pLDH presumably hindering entry of lactate to cause the observed inhibition effect of pLDH. The four compounds were found to exhibit low toxicity against monkey kidney Vero cells at the highest concentrations tested.

摘要

通过一系列连续的一锅法反应制备了一系列新型的 -((2,5-二芳基-3-三氟乙酰基)-1-吲哚-7-基)乙酰胺,该反应序列包括最初由三氟乙酸介导的 1-(2,5-二芳基-1-吲哚-7-基)乙酮肟的贝克曼重排,随后用三氟乙酸酐对生成的 -(2,5-二芳基-1-吲哚-7-基)乙酰胺进行三氟乙酰化。对所制备的化合物进行了潜在的体外抗疟原虫特性评估。对氯喹敏感的 3D7 疟原虫株的抗疟活性初步结果表明,例如,化合物(,)和(,)中 2-(4-氟苯基)-和 5-(4-氟苯基)或 2-(4-氟苯基)-和 4-氟苯乙烯基的组合是这两个系列化合物具有生物活性所必需的。通过对最具活性的化合物与疟原虫乳酸脱氢酶(pLDH)进行分子对接,从理论上解释了它们对疟原虫可能的作用方式。这些化合物对接在 pLDH 中 NAD+的入口处,可能会阻碍乳酸进入,从而导致观察到的 pLDH 抑制作用。在所测试的最高浓度下,发现这四种化合物对猴肾 Vero 细胞表现出低毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c58/6152062/279469699e5b/molecules-22-01099-g001.jpg

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