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新型吡啶、喹喔啉和均三嗪衍生物的抗氧化和抗胆碱酯酶活性的体外评价。

In-vitro evaluation of antioxidant and anticholinesterase activities of novel pyridine, quinoxaline and s-triazine derivatives.

机构信息

Department of Chemistry, Organic and Biomolecular Chemistry Laboratories, Yogi Vemana University, Kadapa, 516005, Andhra Pradesh, India.

Department of Chemistry, Natural Products Laboratories, Yogi Vemana University, Kadapa, 516005, Andhra Pradesh, India.

出版信息

Environ Res. 2021 Aug;199:111320. doi: 10.1016/j.envres.2021.111320. Epub 2021 May 12.

Abstract

Cholinesterase enzymes such as acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE) cause hydrolysis of acetylcholine (ACh), a neurotransmitter responsible for the cognitive functions of the brain such as acquiring knowledge and comprehension. Therefore, inhibition of these enzymes is an effective process to curb the progressive and fatal neurological Alzheimer's disease (AD). Herein, we explored the potential inhibitory activities of various pyridine, quinoxaline, and triazine derivatives (3a-k, 6a-j and 11a-h) against AChE and BuChE enzymes by following the modified Ellman's method. Further, anti-oxidant property of these libraries was monitored using DPPH (2,2'-diphenyl-1-picryl-hydrazylhydrate) radical scavenging analysis. From the studies, we identified that compounds 6e, 6f, 11b and 11f behaved as selective AChE inhibitors with IC values ranging from 7.23 to 10.35 μM. Further studies revealed good anti-oxidant activity by these compounds with IC values in the range of 14.80-27.22 μM. The kinetic studies of the active analogues demonstrated mixed-type of inhibition due to their interaction with both the catalytic active sites (CAS) and peripheral anionic sites (PAS) of the AChE. Additionally, molecular simulation in association with fluorescence and circular dichroism (CD) spectroscopic analyses explained strong affinities of inhibitors to bind with AChE enzyme at the physiological pH of 7.2. Binding constant values of 5.4 × 10, 4.3 × 10, 3.2 × 10 and 4.9 × 10 M corresponding to free energy changes -5.593, -6.799, -6.605 and -8.104 KcalM were obtained at 25 °C from fluorescence emission spectroscopic studies of 6e, 6f, 11b and 11f, respectively. Besides, CD spectroscopy deliberately explained the secondary structure of AChE partly unfolded upon binding with these dynamic molecules. Excellent in vitro profiles of distinct quinoxaline and triazine compounds highlighted them as the potential leads compared to pyridine derivatives, suggesting a path towards developing preventive or therapeutic targets to treat the Alzheimer's disease.

摘要

胆碱酯酶,如乙酰胆碱酯酶 (AChE) 和丁酰胆碱酯酶 (BuChE),会导致乙酰胆碱 (ACh) 的水解,而乙酰胆碱是大脑认知功能(如获取知识和理解)的神经递质。因此,抑制这些酶是抑制进行性和致命性阿尔茨海默病 (AD) 的有效方法。在此,我们通过改良的 Ellman 法探索了各种吡啶、喹喔啉和三嗪衍生物 (3a-k、6a-j 和 11a-h) 对 AChE 和 BuChE 酶的潜在抑制活性。此外,还通过 DPPH(2,2'-二苯基-1-苦基肼)自由基清除分析监测了这些文库的抗氧化特性。从研究中,我们发现化合物 6e、6f、11b 和 11f 对 AChE 具有选择性抑制作用,IC 值范围为 7.23-10.35 μM。进一步的研究表明,这些化合物具有良好的抗氧化活性,IC 值范围为 14.80-27.22 μM。活性类似物的动力学研究表明,由于它们与 AChE 的催化活性位点 (CAS) 和外周阴离子位点 (PAS) 的相互作用,它们表现出混合抑制类型。此外,与荧光和圆二色性 (CD) 光谱分析相关的分子模拟解释了抑制剂在生理 pH 值为 7.2 时与 AChE 酶强烈结合的能力。荧光发射光谱研究得到了 6e、6f、11b 和 11f 的结合常数值分别为 5.4×10、4.3×10、3.2×10 和 4.9×10 M,相应的自由能变化值为-5.593、-6.799、-6.605 和-8.104 KcalM,这些结果是在 25°C 下获得的。此外,CD 光谱专门解释了 AChE 的二级结构在与这些动态分子结合时部分展开。不同喹喔啉和三嗪化合物的出色体外特征表明它们比吡啶衍生物更具潜力,这为开发预防或治疗阿尔茨海默病的治疗靶点指明了方向。

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