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MOLECULAR DIVERSITY TECHNOLOGY OF PYRAZOLE LIBRARY BASED ON COMBINATORIAL CHEMISTRY

机译:基于组合化学的吡唑类分子多样性技术

摘要

A molecular diversity technology of pyrazole derivatives based on combinatorial chemistry is provided to enable a user to easily test biological activity with respect to disease target and manufacture a high purity of target compound with high yield more easily and rapidly than a classical synthetic method. The molecular diversity technology of pyrazole derivatives based on combinatorial chemistry manufactures pyrazole derivatives having a structure of the formula(1) by composing pyrazole derivative compound by performing cyclization by reacting R1COCH2CN compound with R2NHNH2ÀHCl compound firstly and using solution state reaction of R3C6H5NCO compound with the composed compound. In formula(1), X and Z are NH, Y is O and S, and R1, R2, R3 are H, alkyl group of C1-C8 or cyclo alkyl group of C3-C6, phenyl alkyl group of C1-C8, hydroxy alkyl group of C1-C8, and aromatic compound alkyl group of C3-C8.
机译:提供了基于组合化学的吡唑衍生物的分子多样性技术,以使用户能够容易地测试相对于疾病靶标的生物活性,并且比传统的合成方法更容易,更快速地以高产率制备高纯度的靶标化合物。基于组合化学的吡唑衍生物的分子多样性技术是通过首先使R1COCH2CN化合物与R2NHNH2-ÀHCl化合物进行环化反应,然后利用R3C6H5NCO化合物与化合物的溶液状态反应,将吡唑衍生物化合物进行环化反应,从而制得具有式(1)结构的吡唑衍生物。复合。在式(1)中,X和Z为NH,Y为O和S,并且R 1,R 2,R 3为H,C 1 -C 8的烷基或C 3 -C 6的环烷基,C 1 -C 8的苯基烷基, C 1 -C 8的羟基烷基和C 3 -C 8的芳族化合物烷基。

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