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合成、表征、代谢酶抑制剂的评价及基于百里酚的 2-氨基硫醇和磺酸化合物的计算机研究。

Synthesis, characterization, evaluation of metabolic enzyme inhibitors and in silico studies of thymol based 2-amino thiol and sulfonic acid compounds.

机构信息

Department of Chemistry, Faculty of Sciences, Erciyes University, 38039, Kayseri, Turkey.

Department of Chemistry, Faculty of Sciences, Sakarya University, 54050, Sakarya, Turkey.

出版信息

Chem Biol Interact. 2022 Oct 1;366:110134. doi: 10.1016/j.cbi.2022.110134. Epub 2022 Aug 31.

Abstract

Eight new aminothiols (4a-g and 5) and three new sulfonic acid derivatives (6a-c) were synthesized, and their structures were characterized. Inhibitory effects of the obtained compounds on carbonic anhydrase I and II isoforms (hCA I and hCA II), butyrylcholinesterase (BChE) and acetylcholinesterase (AChE), enzymes were investigated. The newly synthesized compounds have inhibited hCA I with Ks ranging from 7.11 ± 1.46 nM (6a) to 670.52 ± 300.41 nM (4b) and, hCA II with Ks ranging from 16.83 ± 5.72 nM (6a) to 453.34 ± 208.56 nM (4c). Acetazolamide was employed as the positive control for both hCA isoforms (K for hCA I 198.81 ± 14.13 nM and K for hCA II 211.42 ± 13.10 nM), and among the new compounds obtained, it was observed that there were compounds that were active at much lower nM levels. All compounds were also evaluated for inhibition of AChE and BChE. They inhibited AChE and BChE enzymes in the range of Ki 5.24 ± 2.27 (6c) - 48.44 ± 21.82 (4g) for AChE and 4.86 ± 0.64 (6c) - 51.75 ± 12.56 (4a) for BChE, and the results were compared with the standard inhibitor Tacrine (K: 14.20 ± 8.83 nM toward AChE and K: 3.39 ± 1.91 nM for BChE). Cholinesterase (BChE and AChE) inhibitory abilities of all synthesized molecules were also performed in situ and molecular docking and molecular dynamics (MD) simulation studies. The molecular coupling scores of the compounds and the free binding energies calculated by MM/GBSA were found to be compatible. Examining the results obtained from this study shows that it may have the potential to develop new drugs to treat some global patients such as glaucoma and Alzheimer's disease (AD).

摘要

合成了 8 种新的氨硫醇(4a-g 和 5)和 3 种新的磺酸衍生物(6a-c),并对其结构进行了表征。研究了所得化合物对碳酸酐酶 I 和 II 同工酶(hCA I 和 hCA II)、丁酰胆碱酯酶(BChE)和乙酰胆碱酯酶(AChE)的抑制作用。新合成的化合物对 hCA I 的抑制作用 Ki 范围为 7.11 ± 1.46 nM(6a)至 670.52 ± 300.41 nM(4b),对 hCA II 的抑制作用 Ki 范围为 16.83 ± 5.72 nM(6a)至 453.34 ± 208.56 nM(4c)。乙酰唑胺被用作两种 hCA 同工酶的阳性对照(hCA I 的 K 值为 198.81 ± 14.13 nM,hCA II 的 K 值为 211.42 ± 13.10 nM),在所得到的新化合物中,观察到有化合物在低得多的 nM 水平下具有活性。所有化合物还被评估了对乙酰胆碱酯酶和丁酰胆碱酯酶的抑制作用。它们对 AChE 和 BChE 酶的抑制作用 Ki 范围为 5.24 ± 2.27(6c)-48.44 ± 21.82(4g)用于 AChE 和 4.86 ± 0.64(6c)-51.75 ± 12.56(4a)用于 BChE,结果与标准抑制剂他克林(K:14.20 ± 8.83 nM 用于 AChE 和 K:3.39 ± 1.91 nM 用于 BChE)进行了比较。还在原位和分子对接和分子动力学(MD)模拟研究中研究了所有合成分子对胆碱酯酶(BChE 和 AChE)的抑制能力。通过 MM/GBSA 计算得到的化合物的分子偶联分数和自由结合能被发现是相容的。从这项研究中获得的结果表明,它可能有潜力开发新的药物来治疗一些全球性的患者,如青光眼和阿尔茨海默病(AD)。

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