The iron chelator pyridoxal isonicotinoyl hydrazone (PIH) and its analogues prevent damage to 2-deoxyribose mediated by ferric iron plus ascorbate

被引:38
作者
Hermes-Lima, M [1 ]
Ponka, P
Schulman, HM
机构
[1] Univ Brasilia, Dept Biol Celular, Oxyrad Res Grp, BR-70910900 Brasilia, DF, Brazil
[2] Sir Mortimer B Davis Jewish Hosp, Lady Davis Inst Med Res, Montreal, PQ H3T 1E2, Canada
来源
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS | 2000年 / 1523卷 / 2-3期
关键词
chelator; iron; iron overload; free radical; antioxidant; deferoxamine; pyridoxal isonicotinoyl hydrazone;
D O I
10.1016/S0304-4165(00)00115-X
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
Iron chelating agents are essential for treating iron overload in diseases such as beta -thalassemia and are potentially useful for therapy in non-iron overload conditions, including free radical mediated tissue injury. Deferoxamine (DFO), the only drug available for iron chelation therapy, has a number of disadvantages (e.g., lack of intestinal absorption and high cost). The tridentate chelator pyridoxal isonicotinoyl hydrazone (PIH) has high iron chelation efficacy in vitro and in vivo with high selectivity and affinity for iron. It is relatively non-toxic, economical to synthesize and orally effective. We previously demonstrated that submillimolar levels of PIH and some of its analogues inhibit lipid peroxidation, ascorbate oxidation, 2-deoxyribose degradation, plasmid DNA strand breaks and 5, 5-dimethylpyrroline-N-oxide (DMPO) hydroxylation mediated by either Fe(II) plus H2O2 or Fe(III)-EDTA plus ascorbate. To further characterize the mechanism of PIH action, we studied the effects of PIH and some of its analogues on the degradation of 2-deoxyribose induced by Fe(III)-EDTA plus ascorbate. Compared with hydroxyl radical scavengers (DMSO, salicylate and mannitol), PIH was about two orders of magnitude more active in protecting 2-deoxyribose from degradation, which was comparable with some of its analogues and DFO. Competition experiments using two different concentrations of 2-deoxyribose (15 vs. 1.5 mM) revealed that hydroxyl radical scavengers (at 20 or 60 mM) were significantly less effective in preventing degradation of 2-deoxyribose at 15 mM than 2-deoxyribose at 1.5 mM. In contrast, 400 muM PIH was equally effective in preventing degradation of both 15 mM and 1.5 mM 2-deoxyribose. At a fixed Fe(III) concentration, increasing the concentration of ligands (either EDTA or NTA) caused a significant reduction in the protective effect of PIH towards 2-deoxyribose degradation. We also observed that PIH and DFO prevent 2-deoxyribose degradation induced by hypoxanthine, xanthine oxidase and Fe(III)-EDTA. The efficacy of PIH or DFO was inversely related to the EDTA concentration. Taken together, these results indicate that PIH land its analogues) works by a mechanism different than the hydroxyl radical scavengers. It is likely that PIH removes Fe(III) from the chelates (either Fe(III)-EDTA or Fe(III)-NTA) and forms a Fe(III)-PIH2 complex that does not catalyze oxyradical formation. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:154 / 160
页数:7
相关论文
共 48 条
  • [1] AVRAMOVICIGRISARU S, 1985, ISRAEL J CHEM, V25, P288
  • [2] THE PRIVATE LIFE OF OLD HONG-KONG - WESTERN WOMEN IN THE BRITISH COLONY 1841-1941 - HOE,S
    BAKER, HDR
    [J]. JOURNAL OF THE ROYAL ASIATIC SOCIETY, 1992, 2 : 492 - 493
  • [3] Prevention of postasphyxia electroretinal dysfunction with a pyridoxal hydrazone
    Bhattacharya, M
    Ponka, P
    Hardy, P
    Hanna, N
    Varma, DR
    Lachapelle, P
    Chemtob, S
    [J]. FREE RADICAL BIOLOGY AND MEDICINE, 1997, 22 (1-2) : 11 - 16
  • [4] Biliary iron excretion in rats following treatment with analogs of pyridoxal isonicotinoyl hydrazone
    Bláha, K
    Cikrt, M
    Nerudová, J
    Fornusková, H
    Ponka, P
    [J]. BLOOD, 1998, 91 (11) : 4368 - 4372
  • [5] BRITTENHAM GM, 1990, ANN NY ACAD SCI, V612, P315
  • [6] BRITTON RS, 1994, IRON METABOLISM HLTH, P311
  • [7] BROOKS SPJ, 1992, BIOTECHNIQUES, V13, P906
  • [8] A fluorescence assay for assessing chelation of intracellular iron in a membrane model system and in mammalian cells
    Cabantchik, ZI
    Glickstein, H
    Milgram, P
    Breuer, W
    [J]. ANALYTICAL BIOCHEMISTRY, 1996, 233 (02) : 221 - 227
  • [9] Role of Fe(III) in Fe(II)citrate-mediated peroxidation of mitochondrial membrane lipids
    Castilho, RF
    Meinicke, AR
    Vercesi, AE
    Hermes-Lima, M
    [J]. MOLECULAR AND CELLULAR BIOCHEMISTRY, 1999, 196 (1-2) : 163 - 168
  • [10] HYDROXYL-RADICAL-INDUCED IRON-CATALYSED DEGRADATION OF 2-DEOXYRIBOSE - QUANTITATIVE-DETERMINATION OF MALONDIALDEHYDE
    CHEESEMAN, KH
    BEAVIS, A
    ESTERBAUER, H
    [J]. BIOCHEMICAL JOURNAL, 1988, 252 (03) : 649 - 653