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合成抗肿瘤药物vismodegib的交叉偶联反应工艺优化(英文)
引用本文:曹萌,赵虎城,胡兵,吉民.合成抗肿瘤药物vismodegib的交叉偶联反应工艺优化(英文)[J].东南大学学报,2014(1):72-76.
作者姓名:曹萌  赵虎城  胡兵  吉民
作者单位:东南大学生物科学与医学工程学院,南京210096
基金项目:The National Basic Research Program of China (973 Program) ( No. 2011 CB933503), China Postdoctoral Science Foundation ( No. 2013M541592).
摘    要:为了提高抗肿瘤药物vismodegib合成反应的产率并控制反应成本,制备了合成目标化合物所需的中间体,并对Negishi偶联反应条件进行了考察.通过单因素分析法,研究了不同的摩尔比、催化剂用量和回流时间对反应的影响.结果表明,在反应混合物2-溴吡啶、2-氯-N-(4-氯-3-碘苯基)-4-(甲磺酰)苯甲酰胺、氯化锌、正丁基锂和四(三苯基膦)钯的摩尔比为1.0∶0.5∶1.5∶1.1∶0.05及回流时间为24 h的条件下,反应收率提高到了72%.该反应条件明显提高了合成效率,避免了原料/催化剂的过多消耗,同时避免了过长的反应时间.反应体系配比和反应时间的优化在合成vismodegib的过程中对提高效率和经济性有重要作用.

关 键 词:vismodegib  合成  交叉偶联  优化

Optimization of cross-coupling reaction for synthesis of antitumor drug vismodegib
Cao Meng,Zhao Hucheng,Hu Bing,Ji Min.Optimization of cross-coupling reaction for synthesis of antitumor drug vismodegib[J].Journal of Southeast University(English Edition),2014(1):72-76.
Authors:Cao Meng  Zhao Hucheng  Hu Bing  Ji Min
Institution:Cao Meng, Zhao Hucheng, Hu Bing, Ji Min
Abstract:In order to improve the yield and reduce the cost in the synthesis of antitumor drug vismodegib the key intermediates are prepared and the Negishi reaction step is examined.The effects of different molar ratios of reactants dosages of catalyst and time for refluxing are investigated by using single factor tests.The results demonstrate that when the molar ratios of 2-bromopyridine 2-chloro-N-4-chloro-3-iodophenyl -4-methylsulfonyl benzamide zinc chloride n-butyllithium and tetrakis triphenyl phosphine palladium are changed to 1.0∶0.5∶1.5∶1.1∶0.05 and the mixture is refluxed for 24 h the production yield is improved to 72%.This reaction condition significantly enhances the synthetic efficiency avoids consuming excessive raw materials/catalysts and meanwhile prevents a prolonged reaction time.The optimization of the proportion of reactants and the heating time is proved to be important for the efficiency and economy in cross-coupling reaction to synthesize vismodegib.
Keywords:vismodegib  vismodegib  synthesis  cross-coupling  optimiza-tion
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