Laboratory for Preservation Technology and Enzyme Inhibition Studies, Department of Pharmaceutical Sciences, M.D. University, Rohtak, Haryana, India.
Laboratory for Preservation Technology and Enzyme Inhibition Studies, Department of Pharmaceutical Sciences, M.D. University, Rohtak, Haryana, India.
Int J Biol Macromol. 2019 Aug 15;135:864-876. doi: 10.1016/j.ijbiomac.2019.04.017. Epub 2019 Jun 1.
Xanthine oxidase is an important enzyme of purine catabolism pathway and has been associated directly in pathogenesis of gout and indirectly in many pathological conditions like cancer, diabetes and metabolic syndrome. In this research Hesperidin, a bioactive flavonoid was explored to determine the capability of itself and its derivatives to inhibit xanthine oxidase. The design and synthesis of Hesperidin derivatives hybridized with hydrazines to form hydrazides and anilines was performed with the help of molecular docking. The synthesized compounds were evaluated for their antioxidant and xanthine oxidase inhibitory potential. The enzyme kinetic studies performed on newly synthesized derivatives showed a potential inhibitory effect on XO ability in competitive manner with IC value ranging from 00.263 μM - 14.870 μM and 3HDa was revealed as most active derivative. Molecular simulation revealed that new Hesperidin derivatives interacted with the amino acid residues PHE798, GLN1194, ARG912, THR585, SER1080 and MET1038 positioned inside the binding site of XO. Results of antioxidant activity revealed that all the derivatives showed very good antioxidant potential. Taking advantage of molecular docking, this hybridization of two natural constituent could lead to desirable xanthine oxidase inhibitors with improved activity.
黄嘌呤氧化酶是嘌呤分解代谢途径中的一种重要酶,与痛风的发病机制直接相关,与癌症、糖尿病和代谢综合征等许多病理状况也间接相关。本研究探索了桔皮苷(一种生物活性类黄酮),以确定其本身及其衍生物抑制黄嘌呤氧化酶的能力。在分子对接的帮助下,设计并合成了与肼杂交的桔皮苷衍生物,形成酰肼和苯胺。评估了合成化合物的抗氧化和黄嘌呤氧化酶抑制潜力。对新合成的衍生物进行的酶动力学研究表明,它们以竞争性方式具有抑制 XO 能力的潜在抑制作用,IC 值范围为 0.263 μM-14.870 μM,3HDa 是最具活性的衍生物。分子模拟表明,新的桔皮苷衍生物与位于 XO 结合位点内的氨基酸残基 PHE798、GLN1194、ARG912、THR585、SER1080 和 MET1038 相互作用。抗氧化活性结果表明,所有衍生物均表现出非常好的抗氧化潜力。利用分子对接,两种天然成分的这种杂交可能会产生具有改善活性的理想黄嘌呤氧化酶抑制剂。