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首页> 外文期刊>Journal of Medicinal Chemistry >Molecular-docking-guided design, synthesis, and biologic evaluation of radioiodinated quinazolinone prodrugs.
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Molecular-docking-guided design, synthesis, and biologic evaluation of radioiodinated quinazolinone prodrugs.

机译:分子对接指导的放射性碘化喹唑啉酮前药的设计,合成和生物学评估。

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Enzyme-mediated cancer imaging and therapy (EMCIT) is a novel approach in which radioactive water-soluble molecules are precipitated in vivo following their hydrolysis by extracellular enzymes overexpressed by cancer cells. AutoDock 3.0 was used to model the interaction-binding between a series of iodinated quinazolinone derivatives and human placental alkaline phosphatase (PLAP, crystal structure in the Protein Data Bank) and to assess the effects of structural modification of the derivatives. Ammonium 2-(2',4'-diphosphoryloxyphenyl)-6-iodo-4-(3H)-quinazolinone (IQ2-P,4-P), having the most favorable calculated inhibition constant, was synthesized and characterized. Concentration-dependent, PLAP-mediated conversion of IQ2-P,4-P (4)/125IQ2-P,4-P (6) to water-insoluble 2-(2',4'-dihydroxyphenyl)-6-[127I/125I]iodo-4-(3H)-quinazolinone (127IQ2-OH,4-OH (2)/125IQ2-OH,4-OH (7)) was observed in solution. Autoradiography indicated that 6 is hydrolyzed by human cancer cells and the resulting 7 precipitates on exterior cell surfaces. Biodistribution studies in mice demonstrated that 6 is minimally retained by normal tissues. The findings support the validity of the EMCIT approach.
机译:酶介导的癌症成像和治疗(EMCIT)是一种新颖的方法,其中放射性水溶性分子通过癌细胞过度表达的细胞外酶水解后在体内沉淀。 AutoDock 3.0用于模拟一系列碘化喹唑啉酮衍生物与人胎盘碱性磷酸酶(PLAP,蛋白质数据库中的晶体结构)之间的相互作用结合,并评估衍生物结构修饰的影响。合成并表征了具有最有利的计算抑制常数的2-(2',4'-二磷酰氧基苯基)-6-碘-4-(3H)-喹唑啉酮铵(IQ2-P,4-P)。 IQ2-P,4-P(4)/ 125IQ2-P,4-P(6)的浓度依赖性PLAP介导转化为水不溶性2-(2',4'-二羟基苯基)-6- [127I在溶液中观察到/ 125I]碘-4-(3H)-喹唑啉酮(127IQ2-OH,4-OH(2)/ 125IQ2-OH,4-OH(7))。放射自显影表明,6种被人类癌细胞水解,所得7种沉淀在细胞外表面。小鼠的生物分布研究表明,正常组织很少保留6种。这些发现支持了EMCIT方法的有效性。

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