Synthesis, Activity Test and Molecular Docking of Novel Nitrophenylcalix[4]-2-methylresorcinarene Derivatives as Antimalarial Agent

Q3 Chemistry Molekul Pub Date : 2023-11-20 DOI:10.20884/1.jm.2023.18.3.7866
Siti Astika Nisa, J. Jumina, M. Mardjan, Y. S. Kurniawan
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Abstract

This research involved the synthesis, antimalarial assay and molecular docking of novel nitrophenylcalix[4]-2-methylresorcinarene derivatives. Calix[4]-2-methylresorcinarene derivatives, i.e., 2N, 3N and 4N, were synthesized in a one-step reaction through the cyclo-condensation reaction between resorcinol and aldehydes, i.e., 2-nitrobenzaldehyde, 3-nitrobenzaldehyde and 4-nitrobenzaldehyde, respectively. The reaction was carried out through the reflux method with ethanol and hydrochloric acid 37% as the solvent and catalyst, respectively. The synthetic products were characterized using FTIR, 1H-NMR, 13C-NMR, and LC-MS spectrometers. Furthermore, the in vitro antimalarial assay was carried out against Plasmodium falciparum strain 3D7. The results showed that the 2N, 3N and 4N compounds were successfully synthesized in 86.4, 78.6 dan 95.7% yield, respectively. The antimalarial activity test of 2N, 3N and 4N gave IC50 values of 2.35, 1.68 and 1.79 µM, therefore, these compounds are classified as active antimalarial agents. Molecular docking performed against the PfLDH receptor showed that the 2N, 3N and 4N compounds had negative binding affinity values of -5.1, -6.1, and -6.0 kcal/mol and had specific interactions in the form of hydrogen bonds to the amino acid residues Arg109, Thr101 and Lys102 in the active site of the receptor. The molecular docking results agreed with the experimental antimalarial assay demonstrating the mechanism of action of nitrophenylcalix[4]-2-methylresorcinarenes as active antimalarial agents happened through the inhibition of the PfLDH receptor.
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作为抗疟药物的新型硝基苯钙[4]-2-甲基间苯二酚衍生物的合成、活性测试和分子对接
该研究涉及新型硝基苯钙[4]-2-甲基间苯二酚衍生物的合成、抗疟检测和分子对接。通过间苯二酚与醛类(即 2-硝基苯甲醛、3-硝基苯甲醛和 4-硝基苯甲醛)的环缩合反应,一步法合成了钙[4]-2-甲基间苯二酚衍生物,即 2N、3N 和 4N。反应采用回流法进行,溶剂和催化剂分别为乙醇和 37% 的盐酸。合成产物采用傅立叶变换红外光谱、1H-NMR、13C-NMR 和 LC-MS 光谱仪进行表征。此外,还对恶性疟原虫菌株 3D7 进行了体外抗疟试验。结果表明,成功合成了 2N、3N 和 4N 化合物,收率分别为 86.4%、78.6%和 95.7%。2N、3N 和 4N 的抗疟活性测试结果 IC50 值分别为 2.35、1.68 和 1.79 µM,因此这些化合物被归类为活性抗疟药物。针对 PfLDH 受体进行的分子对接显示,2N、3N 和 4N 化合物的负结合亲和力值分别为 -5.1、-6.1 和 -6.0 kcal/mol,并与受体活性位点的氨基酸残基 Arg109、Thr101 和 Lys102 存在氢键形式的特异性相互作用。分子对接结果与抗疟实验结果一致,证明了硝基苯钙[4]-2-甲基间苯二酚作为活性抗疟药的作用机制是通过抑制 PfLDH 受体实现的。
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来源期刊
Molekul
Molekul Chemistry-Chemistry (all)
CiteScore
1.30
自引率
0.00%
发文量
31
审稿时长
4 weeks
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