Quantitative structure-activity relationship analysis of 4(3H)-quinazolone derivatives as tyrosine kinase inhibitors by multiple linear regression.

Cancer biotherapy & radiopharmaceuticals Pub Date : 2010-10-01 Epub Date: 2010-09-21 DOI:10.1089/cbr.2010.0791
Vikas Srivastava, Deepa Sinha, Anjani K Tiwari, Himanshu Sharma, Raj Bala Sharma, Vinay K Singh, Anil K Mishra
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引用次数: 9

Abstract

Computational chemistry is playing an increasingly important role in drug design and discovery, structural biology, and quantitative structure-activity relationship studies. A series of 4(3H)-quinozolone derivatives were screened for two-dimensional quantitative structure-activity relationship studies and subsequently their absorption, distribution, metabolism, and excretion (ADME) properties with the use of soft modeling techniques after selecting suitable descriptors for molecular structure. Multiple linear regression analysis was performed for this study. The final quantitative structure-property relationship mathematical models were found as follows: Equation [Y= log (1MIC)] [symbol: see the text] pMIC= 1. 0:2165κ(1) - 2.082χ(3) - 0.3235μT - 0.2185μx - 100.6qN - 35.42. 2. 0:2185κ(1) - 2.1575χ(3) - 0.3622μT - 0.2142μx - 100.4qN - 31.25. 3. 0:0015ω - 2.0822χ(3) - 0.1252μT - 0.2180μx - 112.9qN - 36.05. 4. 2:108χ(3) - 0.0035ET - 0.2033μx - 3.489qesp - 92.60qN - 33.20. 5. 0:2140κ(1) - 2.186χ(3) - 0.0036Oxxx - 0.0016Oxyy - 78.02qN - 31.52.

4(3H)-喹唑酮衍生物酪氨酸激酶抑制剂构效关系的多元线性回归定量分析
计算化学在药物设计和发现、结构生物学和定量构效关系研究中发挥着越来越重要的作用。筛选了一系列4(3H)-喹诺唑酮衍生物,通过选择合适的分子结构描述子,利用软建模技术对其进行二维定量构效关系研究和吸收、分布、代谢和排泄(ADME)特性研究。本研究采用多元线性回归分析。最终的定量结构-性质关系数学模型如下:方程[Y= log (1MIC)][符号:见文]pMIC= 1。0:2165κ(1)- 2.082χ(3)- 0.3235μT - x 35.42 - 100.6 qn - 0.2185μ。2. 0:2185κ(1)- 2.1575χ(3)- 0.3622μT - x 31.25 - 100.4 qn - 0.2142μ。3.0:0015ω - 2.0822χ(3) - 0.1252μT - 0.2180μx - 112.9qN - 36.05。4. 2:108χ(3) - 0.0035ET - 0.2033μx - 3.489qesp - 92.60qN - 33.20。5. 0:2140κ(1) - 2.186χ(3) - 0.0036Oxxx - 0.0016 oxy - 78.02qN - 31.52。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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