INHIBITION OF COLON-TUMOR CELL-GROWTH BY 8-CHLORO-CAMP IS DEPENDENT UPON ITS CONVERSION TO 8-CHLORO-ADENOSINE

被引:34
|
作者
TAYLOR, CW [1 ]
YEOMAN, LC [1 ]
机构
[1] BAYLOR COLL MED,DEPT ANAT,1 BAYLOR PLAZA,HOUSTON,TX 77030
关键词
8-CHLORO-ADENOSINE; 8-CHLORO-CAMP; COLON TUMOR;
D O I
10.1097/00001813-199210000-00007
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Recent interest in site-selective cAMP analogs has focused on the role of 8-chloro-adenosine (8-Cl-adenosine) in the inhibition of tumor cell growth by 8-chloro-cAMP (8-Cl-cAMP) (Van Lookeren Campagne, et al. Cancer Res 1991; 51: 1600-5). We have evaluated 8-Cl-cAMP and 8-Cl-adenosine for their growth inhibitory activity against two human colon adenocarcinoma cell lines, HCT116 and FET. Because these cell lines have been adapted to grow in chemically defined medium we were able to evaluate the effect of serum on 8-Cl-cAMP's growth inhibitory activity. in addition, cells grown in serum-free medium were tested for their sensitivity to 8-Cl-cAMP, serum-activated 8-Cl-cAMP and 8-Cl-adenosine. IC50 values, determined by measuring cell growth using a MTT colorimetric assay, showed that 'serum activation' of 8-Cl-cAMP was required to achieve inhibition of HCT116 (IC50 = 1.3 +/- 0.1 muM) and FET (IC50 = 2.0 +/- 0.1 muM) cell growth. IC50 values were not reached at the highest concentrations tested (IC50 > 500 muM) in the absence of serum, permitting us to conclude that 8-Cl-cAMP does not have growth inhibitory activity between 1.0 and 500 muM doses. HCT116 and FET cells grown in media containing serum and in the presence of 8-Cl-adenosine had IC50 values of 0.6 +/- 0.1 and 0.9 +/- 0.2 muM, respectively. HCT1 16 and FET cells grown in chemically defined medium containing 8-Cl-adenosine exhibited IC50 values of 1.0 +/- 0.1 and 3.1 muM, respectively. Reversed-phase HPLC analysis showed an 11.4 +/- 0.7% conversion of 8-Cl-cAMP to 8-Cl-adenosine in 1 h at 37-degrees-C in the presence of 10% fetal bovine serum (FBS). Analysis of the continued conversion ot 8-Cl-cAMP after 72 h in media containing 10% FBS revealed that 69.5 +/- 0.7% of the 8-Cl-cAMP was converted to 8-Cl-adenosine. These results strongly support the conclusion that enzymatic conversion of 8-Cl-cAMP to 8-Cl-adenosine occurs in the presence of serum and that 8-Cl-adenosine is the active inhibitory compound.
引用
收藏
页码:485 / 491
页数:7
相关论文
共 33 条
  • [1] 8-chloro-cAMP and 8-chloro-adenosine act by the same mechanism in multiple myeloma cells
    Gandhi, V
    Ayres, M
    Halgren, RG
    Krett, NL
    Newman, RA
    Rosen, ST
    [J]. CANCER RESEARCH, 2001, 61 (14) : 5474 - 5479
  • [2] Metabolic and mechanistic aspects of 8-chloro-adenosine and 8-chloro-cAMP-mediated cytotoxicity in multiple myeloma cells.
    Gandi, V
    Ayres, M
    Krett, NL
    Rosen, ST
    [J]. CLINICAL CANCER RESEARCH, 1999, 5 : 3838S - 3838S
  • [3] 8-chloro-cAMP enhances the growth inhibitory effect of cytotoxic drugs in human colon cancer cells
    DiIsernia, G
    Ciardiello, F
    Sandomenico, C
    Pepe, S
    Bianco, AR
    Tortora, G
    [J]. INTERNATIONAL JOURNAL OF ONCOLOGY, 1996, 9 (06) : 1233 - 1237
  • [4] Synergistic inhibition of growth and induction of apoptosis by 8-chloro-cAMP and paclitaxel or cisplatin in human cancer cells
    Tortora, G
    diIsernia, G
    Sandomenico, C
    Bianco, R
    Pomatico, G
    Pepe, S
    Bianco, AR
    Ciardiello, F
    [J]. CANCER RESEARCH, 1997, 57 (22) : 5107 - 5111
  • [5] Effect of 8-chloro-adenosine and cyclophosphamide combination in multiple myeloma cell line
    Teakell, Scott M.
    Nimmanapalli, Ramadevi
    Stellrecht, Christine M.
    Gandhi, Varsha
    [J]. CANCER RESEARCH, 2006, 66 (08)
  • [6] 8-Chloro-adenosine reduces intracellular ATP and dATP levels promoting growth inhibition and death of mantle cell lymphoma cell lines
    Dennison, Jennifer
    Balakrishnan, Kumudha
    Gandhi, Varsha
    [J]. CANCER RESEARCH, 2009, 69
  • [7] The antiproliferative effect of 8-chloro-adenosine, an active metabolite of 8-chloro-cyclic adenosine monophosphate, and disturbances in nucleic acid synthesis and cell cycle kinetics
    Langeveld, CH
    Jongenelen, CAM
    Theeuwes, JWM
    Baak, JPA
    Heimans, JJ
    Stoof, JC
    Peters, GJ
    [J]. BIOCHEMICAL PHARMACOLOGY, 1997, 53 (02) : 141 - 148
  • [8] Synergy of Venetoclax and 8-Chloro-Adenosine in AML: The Interplay of rRNA Inhibition and Fatty Acid Metabolism
    Dinh Hoa Hoang
    Morales, Corey
    Rodriguez, Ivan Rodriguez
    Valerio, Melissa
    Guo, Jiamin
    Chen, Min-Hsuan
    Wu, Xiwei
    Horne, David
    Gandhi, Varsha
    Chen, Lisa S.
    Zhang, Bin
    Pullarkat, Vinod
    Rosen, Steven T.
    Marcucci, Guido
    Buettner, Ralf
    Nguyen, Le Xuan Truong
    [J]. CANCERS, 2022, 14 (06)
  • [9] INHIBITION OF HUMAN PANCREATIC-CANCER CELL (MIA PACA-2) GROWTH BY CHOLERA-TOXIN AND 8-CHLORO-CAMP INVITRO
    OHMURA, E
    WAKAI, K
    ISOZAKI, O
    MURAKAMI, H
    ONODA, N
    EMOTO, N
    SHIZUME, K
    TSUSHIMA, T
    DEMURA, H
    ROBINS, RK
    [J]. BRITISH JOURNAL OF CANCER, 1993, 67 (02) : 279 - 283
  • [10] Inhibition of topoisomerase II by 8-chloro-adenosine triphosphate induces DNA double-stranded breaks in 8-chloro-adenosine-exposed human myelocytic leukemia K562 cells
    Yang, Sheng-Yong
    Jia, Xiu-Zhen
    Feng, Li-Yan
    Li, Shu-Yan
    An, Guo-Shun
    Ni, Ju-Hua
    Jia, Hong-Ti
    [J]. BIOCHEMICAL PHARMACOLOGY, 2009, 77 (03) : 433 - 443