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一些新型黄嘌呤氧化酶抑制剂的合成与酶活性。3-取代的5,7-二羟基吡唑并(1,5-α)嘧啶。

Synthesis and enzymic activity of some novel xanthine oxidase inhibitors. 3-Substituted 5,7-dihydroxypyrazolo(1,5-alpha)pyrimidines.

作者信息

Springer R H, Dimmitt M K, Novinson T, O'Brien D E, Robins R K, Simon L N, Miller J P

出版信息

J Med Chem. 1976 Feb;19(2):291-6. doi: 10.1021/jm00224a017.

Abstract

A series of 3-substituted 5,7-dihydroxypyrazolo[1,5-alpha]pyrimidines containing various aromatic [phenyl- (3e), 3-pyridyl- (3f), p-bromophenyl- (3g), p-chlorophenyl- (3h), p-acetamidophenyl- (3i), p-tolyl- (3j), m-tolyl- (3k), 3,4-methylenedioxyphenyl- (3m), or naphthyl- (3n)] or nonaromatic [hydrogen- (3a), nitro- (3b), bromo- (3c), or chloro- (3d)] substituents in the 3 position was synthesized and tested as inhibitors of xanthine oxidase. The compounds (3a-m) were synthesized by condensation of the appropriate 3-amino-4-substituted pyrazole with diethyl malonate in alcoholic sodium methoxide and neutralization of the resulting enol sodium salts. As inhibitors of xanthine oxidase, 3e-n greater than 3a,c,d congruent to allopurinol greater than 3b. The 3-aryl-substituted compounds 3e-n were 30-160 times better xanthine oxidase inhibitors than allopurinol using hypoxanthine as substrate and 10-80 times better using xanthine as substrate, as evidenced by a comparison of Ki values. The inhibition by all compounds (3a-n) was totally reversible and of the noncompetitive or mixed type. A study of the pH dependence of xanthine oxidase inhibition by 3a,e,g and allopurinol indicated that the 3-aryl substituents facilitated binding to the enzyme. These and the above results show that the compounds reported here inhibit xanthine oxidase by a mechanism which is significantly different from that of allopurinol.

摘要

合成了一系列在3位含有各种芳香族[苯基 - (3e)、3 - 吡啶基 - (3f)、对溴苯基 - (3g)、对氯苯基 - (3h)、对乙酰氨基苯基 - (3i)、对甲苯基 - (3j)、间甲苯基 - (3k)、3,4 - 亚甲二氧基苯基 - (3m)或萘基 - (3n)]或非芳香族[氢 - (3a)、硝基 - (3b)、溴 - (3c)或氯 - (3d)]取代基的3 - 取代5,7 - 二羟基吡唑并[1,5 - α]嘧啶,并作为黄嘌呤氧化酶抑制剂进行了测试。化合物(3a - m)是通过适当的3 - 氨基 - 4 - 取代吡唑与丙二酸二乙酯在甲醇钠的乙醇溶液中缩合,并中和所得烯醇式钠盐而合成的。作为黄嘌呤氧化酶抑制剂,3e - n > 3a、c、d ≈ 别嘌呤醇 > 3b。以次黄嘌呤为底物时,3 - 芳基取代的化合物3e - n作为黄嘌呤氧化酶抑制剂的效果比别嘌呤醇好30 - 160倍,以黄嘌呤为底物时则好10 - 80倍,这通过比较Ki值得以证明。所有化合物(3a - n)的抑制作用完全可逆,且为非竞争性或混合型。对3a、e、g和别嘌呤醇抑制黄嘌呤氧化酶的pH依赖性研究表明,3 - 芳基取代基有利于与酶结合。这些结果以及上述结果表明,本文报道的化合物通过一种与别嘌呤醇显著不同的机制抑制黄嘌呤氧化酶。

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