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调节生物活性铁螯合剂的抗增殖活性:2-乙酰吡啶和2-苯甲酰吡啶腙配体的配位化学及生物学功效表征

Tuning the antiproliferative activity of biologically active iron chelators: characterization of the coordination chemistry and biological efficacy of 2-acetylpyridine and 2-benzoylpyridine hydrazone ligands.

作者信息

Bernhardt Paul V, Wilson Gregory J, Sharpe Philip C, Kalinowski Danuta S, Richardson Des R

机构信息

Department of Chemistry, Centre for Metals in Biology, University of Queensland, Brisbane, 4072, Australia.

出版信息

J Biol Inorg Chem. 2008 Jan;13(1):107-19. doi: 10.1007/s00775-007-0300-4. Epub 2007 Sep 25.

Abstract

2-Pyridinecarbaldehyde isonicotinoyl hydrazone (HPCIH) and di-2-pyridylketone isonicotinoyl hydrazone (HPKIH) are two Fe chelators with contrasting biological behavior. HPCIH is a well-tolerated Fe chelator with limited antiproliferative activity that has potential applications in the treatment of Fe-overload disease. In contrast, the structurally related HPKIH ligand possesses significant antiproliferative activity against cancer cells. The current work has focused on understanding the mechanisms of the Fe mobilization and antiproliferative activity of these hydrazone chelators by synthesizing new analogs (based on 2-acetylpyridine and 2-benzoylpyridine) that resemble both series and examining their Fe coordination and redox chemistry. The Fe mobilization activity of these compounds is strongly dependent on the hydrophobicity and solution isomeric form of the hydrazone (E or Z). Also, the antiproliferative activity of the hydrazone ligands was shown to be influenced by the redox properties of the Fe complexes. This indicated that toxic Fenton-derived free radicals are important for the antiproliferative activity for some hydrazone chelators. In fact, we show that any substitution of the H atom present at the imine C atom of the parent HPCIH analogs leads to an increase in antiproliferative efficacy owing to an increase in redox activity. These substituents may deactivate the imine R-C=N-Fe (R is Me, Ph, pyridyl) bond relative to when a H atom is present at this position preventing nucleophilic attack of hydroxide anion, leading to a reversible redox couple. This investigation describes novel structure-activity relationships of aroylhydrazone chelators that will be useful in designing new ligands or fine-tuning the activity of others.

摘要

2-吡啶甲醛异烟酰腙(HPCIH)和二-2-吡啶基甲酮异烟酰腙(HPKIH)是两种具有截然不同生物学行为的铁螯合剂。HPCIH是一种耐受性良好的铁螯合剂,具有有限的抗增殖活性,在治疗铁过载疾病方面具有潜在应用。相比之下,结构相关的HPKIH配体对癌细胞具有显著的抗增殖活性。目前的工作集中在通过合成类似于这两个系列的新类似物(基于2-乙酰吡啶和2-苯甲酰吡啶)并研究它们的铁配位和氧化还原化学,来理解这些腙螯合剂的铁动员和抗增殖活性机制。这些化合物的铁动员活性强烈依赖于腙的疏水性和溶液异构体形式(E或Z)。此外,腙配体的抗增殖活性被证明受铁配合物的氧化还原性质影响。这表明有毒的芬顿衍生自由基对某些腙螯合剂的抗增殖活性很重要。事实上,我们表明,母体HPCIH类似物的亚胺C原子上存在的H原子的任何取代都会由于氧化还原活性的增加而导致抗增殖功效增强。相对于该位置存在H原子时,这些取代基可能使亚胺R-C=N-Fe(R为甲基、苯基、吡啶基)键失活,阻止氢氧根阴离子的亲核攻击,从而导致可逆的氧化还原对。这项研究描述了芳酰腙螯合剂的新型构效关系,这将有助于设计新的配体或微调其他配体的活性。

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