Modulation of cellular response to anticancer treatment by caffeine: Inhibition of cell cycle checkpoints, DNA repair and more

被引:63
作者
Sabisz, Michal [1 ]
Skladanowski, Andrzej [1 ]
机构
[1] Gdansk Univ Technol, Dept Pharmaceut Technol & Biochem, Lab Mol & Cellular Pharmacol, PL-80952 Gdansk, Poland
关键词
modulation; anticancer therapy; cell cycle; checkpoints; DNA repair; caffeine analogs; antitumor drug; irradiation;
D O I
10.2174/138920108785161497
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Caffeine and other methylxanthines produce multiple physiologic effects throughout the human body, many of these effects could potentially modulate the activity of anticancer therapy. Caffeine may directly interfere with drug transport to tumor cells by formation of mixed stacking complexes with polyaromatic drugs. If formed in cells, these complexes may also prevent of intercalating drugs from DNA binding and, in this way, lower their antitumor activity. Since many of potent carcinogens are polyaromatic compounds, formation of stacking complexes with carcinogens could be associated with anti-genotoxic activity of caffeine and its use in cancer chemoprevention. Caffeine has also been reported to inhibit ATM and ATR kinases which leads to the disruption of multiple DNA damage-responsive cell cycle checkpoints and greatly sensitizes tumor cells to antitumor agents which induce genotoxic stress. Caffeine may inhibit repair of DNA lesions through a direct intereference with DNA-PK activity and other repair enzymes. A number of in vitro and in vivo studies demonstrated that caffeine modulates both innate and adaptive immune responses via inhibition of cyclic adenosine monophosphate (cAMP)-phosphodiesterase. Finally, another group of effects induced by caffeine is mediated through its inhibitory action on adenosine receptors. This may modulate the stability of HIF1 alpha as well as VEGF and interleukin-8 expression in tumor cells, which could have a direct impact on neovascularization of human tumors. In this review, we present different molecular mechanisms by which caffeine and other methylxanthines may directly or indirectly modulate the effect of antitumor treatment in tumor cells and in cancer patients.
引用
收藏
页码:325 / 336
页数:12
相关论文
共 142 条
[31]   A pilot study of plasma caffeine concentrations in a US sample of smoker and nonsmoker volunteers [J].
de Leon, J ;
Diaz, FJ ;
Rogers, T ;
Browne, D ;
Dinsmore, L ;
Ghosheh, OH ;
Dwoskin, LP ;
Crooks, PA .
PROGRESS IN NEURO-PSYCHOPHARMACOLOGY & BIOLOGICAL PSYCHIATRY, 2003, 27 (01) :165-171
[32]  
DEFRANK JS, 1996, CANCER RES, V56, P5356
[33]   Caffeine and the G2/M block override:: A concept resulting from a misleading cell kinetic delay, independent of functional p53 [J].
Deplanque, G ;
Céraline, J ;
Mah-Becherel, MCM ;
Cazenave, JP ;
Bergerat, JP ;
Klein-Soyer, C .
INTERNATIONAL JOURNAL OF CANCER, 2001, 94 (03) :363-369
[34]   Caffeine does not cause override of the G2/M block induced by UVc or gamma radiation in normal human skin fibroblasts [J].
Deplanque, G ;
Vincent, F ;
Mah-Becherel, MCM ;
Cazenave, JP ;
Bergerat, JP ;
Klein-Soyer, C .
BRITISH JOURNAL OF CANCER, 2000, 83 (03) :346-353
[35]   Adenosine A2A receptor stimulation increases angiogenesis by down-regulating production of the antiangiogenic matrix protein thrombospondin 1 [J].
Desai, A ;
Victor-Vega, C ;
Gadangi, S ;
Montesinos, MC ;
Chu, CC ;
Cronstein, BN .
MOLECULAR PHARMACOLOGY, 2005, 67 (05) :1406-1413
[36]   INTERACTION OF CAFFEINE WITH ULTRA-VIOLET-LIGHT-IRRADIATED DNA [J].
DOMON, M ;
BARTON, B ;
PORTE, A ;
RAUTH, AM .
INTERNATIONAL JOURNAL OF RADIATION BIOLOGY AND RELATED STUDIES IN PHYSICS CHEMISTRY AND MEDICINE, 1970, 17 (04) :395-+
[37]   Differential alteration of drug-metabolizing enzyme activities after cyclophosphamide/adriamycin administration in breast cancer patients [J].
Elkiran, T. ;
Harputhioglu, H. ;
Yasar, U. ;
Babaoglu, M. O. ;
Dincel, A. K. ;
Altundag, K. ;
Ozisik, Y. ;
Guler, N. ;
Bozkurt, A. .
METHODS AND FINDINGS IN EXPERIMENTAL AND CLINICAL PHARMACOLOGY, 2007, 29 (01) :27-32
[38]   Complexation of anthracycline drugs with DNA in the presence of caffeine [J].
Evstigneev, M. P. ;
Khomich, V. V. ;
Davies, D. B. .
EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 2006, 36 (01) :1-11
[39]   Complexation of daunomycin with a DNA oligomer in the presence of an aromatic vitamin (B2) determined by NMR spectroscopy [J].
Evstigneev, MP ;
Mykhina, YV ;
Davies, DB .
BIOPHYSICAL CHEMISTRY, 2005, 118 (2-3) :118-127
[40]   RADIOPROTECTION BY CAFFEINE PRETREATMENT AND POSTTREATMENT IN THE BONE-MARROW CHROMOSOMES OF MICE GIVEN WHOLE-BODY GAMMA-IRRADIATION [J].
FAROOQI, Z ;
KESAVAN, PC .
MUTATION RESEARCH, 1992, 269 (02) :225-230