Citation: SONG Yu-Min, LI Wen-Juan, YANG Mei-Ling. Study on Synthesis, Characterization and Antitumor Activity of Rare Earth Metal Complexes with All Trans Retinoic Acid and Arginine Acid[J]. Chinese Journal of Inorganic Chemistry, ;2014, 30(5): 1087-1096. doi: 10.11862/CJIC.2014.170 shu

Study on Synthesis, Characterization and Antitumor Activity of Rare Earth Metal Complexes with All Trans Retinoic Acid and Arginine Acid

  • Received Date: 21 November 2013
    Available Online: 30 December 2013

    Fund Project: 国家自然科学基金资助项目(No.21062017);甘肃省教育厅(No.1101-05);甘肃省高分子材料重点实验室资助项目。 (No.21062017);甘肃省教育厅(No.1101-05)

  • For the further research of drug applications of rare earth complexes, four complexes of RE L2 L'Cl·nH2O (RE: Nd3+, Eu3+, La3+, Sc3+; L=all-trans retinoic acid; L'=L-arginine acid ion) were synthesized. The compositions of complexes were tested by IR, UV, fluorescence spectra, elemental analysis and TG-DTA methods. Meanwhile, the antitumor activity against HepG2, A549 and Hela in vitro growth cells was investigated by MTT test method, and the results showed that the synthesized four rare earth complexes have different degrees of inhibition on the growth of HepG2, A549 and Hela cells.And the inhibitory effect of complexes is significantly better than that of nitrate of rare earth and ligands. ScL2L'Cl complex is the best one with inhibition of the four under the concentration of 1 mmol·L-1. The interaction of these complexes with DNA was studied by fluorescence spectra, viscosity and UV spectra, and the results showed that the type of interaction is mainly intercalation, which may be the one of reasons for antitumor activity of the complexes. The research provides certain ideas and experimental basis to design efficient and low toxicity of rare earth antitumor drugs.
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    1. [1]

      [1] XIAO Fang-Ming(肖方明). Technology Roadmap of the Rareearth Industry in Guangdong Province(广东省稀土产业技 术路线图). Guangzhou: South China University of Technology Press, 2011.

    2. [2]

      [2] Sert S, Kutahyali C, Inan S, et al. Hydrometallurgy, 2008, 90 (1):13-18

    3. [3]

      [3] Garner J P, Heppell P S. Burns, 2005, 31(5):539-547

    4. [4]

      [4] LI Hai-Yan(李海燕), CAO Li-Min(曹励民), WANG Bing-Liang(王秉亮). J. China Med. Univ.(中国医科大学学报), 2013, 42(2):106-110

    5. [5]

      [5] DAI Hong-Hai(戴洪海), CHEN Ping(陈萍), HU Guo-Qiang (胡国强), et al. Chin. J. Cancer Prevention(中华肿瘤防治 杂志), 2006, 13(21):1605-1608

    6. [6]

      [6] HU Bao-Guang(胡宝光), ZHENG Zong-Heng(郑宗珩), WEI Hong-Bo(卫洪波), et al. Chin. J. Biomed. Eng.(中华生物医 学工程), 2011, 17(1):19-24

    7. [7]

      [7] JIA Wei-Tao(贾韦韬), LU Hao-Jie(陆豪杰), YUN Dong(贠 栋), et al. Acta Chim. Sin.(化学学报), 2007, 65(3):177-183

    8. [8]

      [8] SHANG Yan-Fang(商艳芳), GE Cun-Wang(葛存旺), WU Chang-Yue(吴昌月), et al. Chem. Reagent(化学试剂), 2009, 31(12):971-973, 980

    9. [9]

      [9] HE Qi-Zhuang(何其庄), YU Hui(郁慧), ZHOU Mei-Feng(周 美峰), et al. J. Chinese Soc. Rare Earths(中国稀土学报), 2007, 25(2):150-156

    10. [10]

      [10] LI Xiao-Hui(李小慧), WANG Wei-Dong(王卫东), HU Yuan-Liang(胡远亮), et al. J. Chinese Soc. Rare Earths(中国稀土 学报), 2012, 30(1):1-6

    11. [11]

      [11] SONG Yu-Min(宋玉民), YANG Pei-Ju(杨培菊), WANG Liu-Fang(王流芳), et al. Acta Chim. Sin.(化学学报), 2003, 61 (8):1266-1270

    12. [12]

      [12] LIU Jie(刘洁), WEI Chun-Ying(魏春英), YANG Pin(杨频). Acta Chim. Sin.(化学学报), 2012, 70(3):277-283

    13. [13]

      [13] XU Jun-Peng(许军鹏), LIU Jing-Wang(刘景旺), DA Wen-Yan(达文燕), et al. J. Chinese Soc. Rare Earths(中国稀土学 报), 2009, 27(1):68-75

    14. [14]

      [14] ZHANG Qi-Xiong(张齐雄), SHI Lun-Yong(施伦勇), LIU Yan-Ji(刘衍季). Nat. Prod. Res. Dev.(天然产物研究开发), 2012, 24(10):1398-1401

    15. [15]

      [15] HE Dong-Shan(何东山), MAI Yu-Liang (麦裕良), YU Lin (余林). Fine Chem.(精细化工), 2013, 30(1):12-16

    16. [16]

      [16] Long E C, Barton J K. Acc. Chem. Res., 1990, 23(9):271-273

    17. [17]

      [17] CHENG Guo-Zhen(陈国珍), HUANG Xian-Zhi(黄贤智), XU Jin-Gou(许金钩), et al. Fluorescence Analysis. 2nd Ed.(荧 光分析.2版). Beijing: Science Press, 1990:201-212

    18. [18]

      [18] YANG Pin(杨频), GAO Fei(高飞). Principles of Bioinorganic Chemistry(生物无机化学原理). Beijing: Science Press, 2002:329-331

    19. [19]

      [19] LU Ji-Xin(卢继新), ZHANG Gui-Zhu(张贵珠), HUANG Zhi-Na(黄志娜), et al. Acta. Chim. Sin.(化学学报), 2002, 60 (6):967-972

    20. [20]

      [20] LI Lai-Sheng(李来生), HUANG Wei-Dong(黄伟东), WANG Li-Ping(王丽苹), et al. Acta Chim. Sin.(化学学报), 2002, 60 (1):98-104

    21. [21]

      [21] LI Wen-You(李文友), ZHU Shou-Tian(朱守田), HE Xi-Wen (何锡文), et al. Acta Chim. Sin.(化学学报), 2002, 60(1):105-108

    22. [22]

      [22] ZHANG Rong-Ying(张蓉颖), PANG Dai-Wen(庞代文), CAI Ru-Xiu(蔡汝秀). Chem. J. Chinese Universities(高等学校 化学学报), 1999, 20(8):1201-1207

    23. [23]

      [23] Cantor C, Schimmel P R. Biophysical Chemistry: Vol.2. San Francisco: Freeman W H, 1980:398

    24. [24]

      [24] Kumar C V, Asuncion E H. J. Am. Chem. Soc., 1993, 115 (19):8547-8553

    25. [25]

      [25] HUANG Jun-Teng(黄俊腾), ZHANG Yang(张阳), WANG Xiang-Li(王湘利), et al. Chinese J. Inorg. Chem.(无机化学 学报), 2013, 29(8):1649-1656

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