4-硫胸苷的微波合成及光谱性质研究
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  • 英文篇名:Synthesis of 4-thiothymidine under microwave irradiation and study on their spectroscopy
  • 作者:霍书华 ; 李德鹏 ; 王健 ; 张晓辉
  • 英文作者:HUO Shu-hua;LI De-peng;WANG Jian;ZHANG Xiao-hui;College of Environment and Chemical Engineering,Dalian University;
  • 关键词:4-硫胸苷 ; 微波合成 ; 光谱分析
  • 英文关键词:4-Thiothymidine;;microwave synthesis;;spectroscopic studies
  • 中文刊名:FZKB
  • 英文刊名:Journal of Molecular Science
  • 机构:大连大学环境与化学工程学院;
  • 出版日期:2013-10-15
  • 出版单位:分子科学学报
  • 年:2013
  • 期:v.29;No.133
  • 基金:教育部留学回国人员科研启动基金资助项目
  • 语种:中文;
  • 页:FZKB201305008
  • 页数:5
  • CN:05
  • ISSN:22-1262/O4
  • 分类号:49-53
摘要
首次采用微波法快速、高效地合成了4-硫胸苷化合物,通过红外光谱、紫外-可见光谱、核磁共振和质谱等测试手段对化合物的结构进行了表征.同时,结合光谱法初步研究了胸苷和4-硫胸苷的光谱性质,对比二者光谱上的变化并探求其产生原因.研究结果表明4-硫胸苷的紫外-可见光谱、红外光谱、核磁共振都有特征性的变化,为研究4-硫胸苷作为抗癌药物的性能影响提供了一些重要的基础信息.
        4-Thiothymidine was firstly synthesized under microwave irradiation,which proved to be an efficient way.The structure was characterized by IR,UV-vis,HRMS,1 H NMR and 13C NMR spectrometry.Meanwhile,the spectrum features of thymidine and 4-thiothymidine were investigated,compared changes of spectroscopy and explored the reasons for its emergence.The results showed that 4-thiothymidine has an important feature of spectrum,which provided some basic information for further study on anti-cancer drugs.
引文
[1]FAVRE A,SAINTOMC,FOURREY J L,et al.[J].J Photoch Photobio B,1998,42(2):109-124.
    [2]MASSEY A,XU Y Z,KARRAN P.[J].Curr Biol,2001,11(14):1142-1146.
    [3]MASSEY A,XU Y Z,KARRAN P.[J].DNA Repair,2002,1(4):275-286.
    [4]张晓辉,王爱玲,李德鹏,等.[J].化学进展,2010,22(5):784-795.
    [5]REELFS O,XU Y Z,MASSEY A,et al.s[J].Mol Cancer Ther,2007,6(9):2487-2495.
    [6]PRIDGEON S W,HEER R,TAYLOR G A,et al.[J].Brit J Cancer,2011,104(12):1869-1876.
    [7]GEMENETZIDIS E,SHAVORSKAYA O,XU Y,et al.[J].J Dermatolog Treat,2011:1-6.
    [8]FOX J J,VAN PRAAG D,WEMPEN I,et al.[J].J Am Chem Soc,1959,81(1):178-187.
    [9]BROWN D J.[J].J Appl Chem,1959,9(4):203-209.
    [10]BROWN D J,HARPER J S.[J].J Chem Soc(Resumed),1961:1298-1303.
    [11]BROWN D J,SHINOZUKA K.[J].Aust J Chem,1980,33(5):1147-1152.
    [12]FELCZAK K,BRETNER M,KULIKOWSKI T,et al.[J].Nucleos nucleot,1993,12(2):245-261.
    [13]SALADINO R,CRESTINI C,BERNINI R,et al.[J].J Chem Soc,Perkin Transactions 1,1994,21:3053-3054.
    [14]ZHANG X,XU Y Z.[J].Molecules,2011,16(7):5655-5664.
    [15]OH H.[J].Acta Chem Scand,1998,52:1270-1274.
    [16]SCHEIT K.[J].Chem Ber,1968,101(4):1141-1147.
    [17]RAO C,VENKATARAGHAVAN R.[J].Spectrochim Acta,1962,18(4):541-547.
    [18]胡皆汉,郑学仿.实用红外光谱学[M].北京:科学出版社,2011:9.
    [19]张晓辉,王健,翟红秀.微波辅助下的4-硫胸苷及衍生物的合成方法:中国,201210157299.2[P].2012-10-15.
    [20]KARPLUS M,POPLE J A.[J].J Chem Phys,1963,38(12):2803-2806.
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