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色酮噻唑衍生物的合成、体外酶抑制活性、动力学及计算机模拟研究。

Isatin thiazoles as antidiabetic: Synthesis, in vitro enzyme inhibitory activities, kinetics, and in silico studies.

机构信息

International Center for Chemical and Biological Sciences, H. E. J. Research Institute of Chemistry, University of Karachi, Karachi, Pakistan.

Institute of Marine Biotechnology, Universiti Malaysia Terengannu, Kuala Terengganu, Terengganu, Malaysia.

出版信息

Arch Pharm (Weinheim). 2022 Jun;355(6):e2100481. doi: 10.1002/ardp.202100481. Epub 2022 Mar 30.

Abstract

Diabetes mellitus is one of the most prevalent diseases nowadays. Several marketed drugs are available for the cure and treatment of diabetes, but there is still a dire need of introducing compatible drug molecules with lesser side effects. The current study is based on the synthesis of isatin thiazole derivatives 4-30 via the Hantzsch reaction. The synthetic compounds were characterized using different spectroscopic techniques and evaluated for their α-amylase and α-glucosidase inhibition potential. Of 27 isatin thiazoles, five (4, 5, 10, 12, and 16) displayed good activities against the α-amylase enzyme with IC values in the range of 22.22 ± 0.02-27.01 ± 0.06 µM, and for α-glucosidase, the IC values of these compounds were in the range of 20.76 ± 0.17-27.76 ± 0.17 µM, respectively. The binding interactions of the active molecules within the active site of enzymes were studied with the help of molecular docking studies. In addition, kinetic studies were carried out to examine the mechanism of action of the synthetic molecules as well. Compounds 3a, 4, 5, 10, 12, and 16 were also examined for their cytotoxic effect and were found to be noncytotoxic. Thus, several molecules were identified as good antihyperglycemic agents, which can be further modified to enhance inhibition ability and to find the lead molecule that can act as a potential antidiabetic agent.

摘要

糖尿病是当今最普遍的疾病之一。有几种市售药物可用于治疗和治疗糖尿病,但仍迫切需要引入副作用较小的相容药物分子。本研究基于通过 Hantzsch 反应合成色酮衍生物 4-30。使用不同的光谱技术对合成化合物进行了表征,并评估了它们对α-淀粉酶和α-葡萄糖苷酶抑制潜力。在 27 种色酮中,有 5 种(4、5、10、12 和 16)对α-淀粉酶表现出良好的活性,IC 值在 22.22 ± 0.02-27.01 ± 0.06 μM 范围内,而对于α-葡萄糖苷酶,这些化合物的 IC 值在 20.76 ± 0.17-27.76 ± 0.17 μM 范围内。借助分子对接研究研究了活性分子在酶活性部位内的结合相互作用。此外,还进行了动力学研究以检查合成分子的作用机制。还检查了化合物 3a、4、5、10、12 和 16 的细胞毒性,并发现它们是非细胞毒性的。因此,鉴定出几种分子作为良好的抗高血糖药物,可进一步修饰以增强抑制能力,并找到可作为潜在抗糖尿病药物的先导分子。

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