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首页> 外文期刊>International Research Journal of Pure and Applied Chemistry >Azamacrocycle Complexes: Synthesis andXanthine Oxidase and Antioxidant Activity
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Azamacrocycle Complexes: Synthesis andXanthine Oxidase and Antioxidant Activity

机译:Azamacrocycle复合物:合成和黄嘌呤氧化酶和抗氧化活性

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Aims: Gout is caused by high uric acid in the blood that leads to excess uric acid crystallizing in the joints causing swelling and pain. Uric acid is produced from the breakdown of the purine which is released when cells die or introduced from the food we eat. The enzyme that helps in breakdown of purine to uric acid is xanthine oxidase (XO). Since XO makes the conversion of purine into uric acid happen, preventing its activity results to slow down of uric acid production. Such is the role of xanthine oxidase inhibitors (XOI). In this context we aimed to synthesize new complex which can be potent towards XOI and antioxidant properties.Study Design: Based on the literature we have designed azamacrocyclic complexes for advanced biological applications.Place and Duration of Study: Department of Chemistry, Research Laboratory, Yuvaraj’s College, University of Mysore, Mysore for synthesis and for biological activities Mahajana Life Science Research Laboratory, Department of Biotechnology, Microbiology and Biochemistry. June 2012-may 2013.Methodology: The macrocyclic metal complexes were synthesized by the template condensation of diamine and formaldehyde in MeOH. After stirring for 10 min a solution of 1, 4-diaminobutane, metallic salt and 2, 4-pentanedione in MeOH was added and the resulting mixture was refluxed.Results: Macrocylic metal complexes containing phenylene bridges have been synthesized and subjected to biological activities. Among the four synthesized complexes (3a-3d), 3d exhibited 83.2% of XO inhibition and also showed potent antioxidant activity. The same was also evident from structure activity relationship with atomic contact energy values of -285.78 compared to allopurinol with -200.02.Conclusion: From the present study, we infer that, aza macrocyclic metal complexes could lead to the development of newer therapeutics for gout and other inflammatory diseases which are caused by oxidative stress.
机译:目的:痛风是由血液中的高尿酸引起的,导致关节中过量的尿酸结晶,导致肿胀和疼痛。尿酸是由嘌呤分解产生的,当细胞死亡或从我们食用的食物中引入时,嘌呤就会释放出来。有助于将嘌呤分解为尿酸的酶是黄嘌呤氧化酶(XO)。由于XO使嘌呤向尿酸的转化发生,因此阻止了其活性从而减慢了尿酸的产生。这就是黄嘌呤氧化酶抑制剂(XOI)的作用。在这种情况下,我们旨在合成对XOI和抗氧化剂性能有效的新复合物。研究设计:根据文献,我们设计了氮杂大环配合物,用于高级生物学应用。迈索尔大学,迈索尔大学,用于合成和生物活性Mahajana生命科学研究实验室,生物技术,微生物学和生物化学系。 2012年6月至2013年5月。方法:通过二胺和甲醛在MeOH中的模板缩合合成大环金属配合物。搅拌10分钟后,加入1,4-二氨基丁烷,金属盐和2,4-戊二酮在MeOH中的溶液,并将所得混合物回流。结果:已经合成了含有亚苯基桥的大环金属配合物,并具有生物活性。在四种合成的复合物(3a-3d)中,3d表现出83.2%的XO抑制作用,还显示出有效的抗氧化活性。从结构活性关系来看,原子接触能值为-285.78,而别嘌呤醇为-200.02。结论:从本研究中我们推断,氮杂大环金属配合物可能导致痛风和尿毒症的新疗法的发展。由氧化应激引起的其他炎性疾病。

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