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首页> 外文期刊>Antioxidants and redox signalling >The Exochelins of Pathogenic Mycobacteria: Unique, Highly Potent, Lipid- and Water-Soluble Hexadentate Iron Chelators with Multiple Potential Therapeutic Uses
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The Exochelins of Pathogenic Mycobacteria: Unique, Highly Potent, Lipid- and Water-Soluble Hexadentate Iron Chelators with Multiple Potential Therapeutic Uses

机译:致病性分枝杆菌的Exochelins:具有多种潜在治疗用途的独特,高强度,脂质和水溶性六齿铁螯合剂

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Significance: Exochelins are lipid- and water-soluble siderophores of Mycobacterium tuberculosis with unique properties that endow them with exceptional pharmacologic utility. Exochelins can be utilized as probes to decipher the role of iron in normal and pathological states, and, since they rapidly cross cell membranes and chelate intracellular iron with little or no toxicity, exochelins are potentially useful for the treatment of a number of iron-dependent pathological phenomena. Recent Advances: In animal models, exochelins have been demonstrated to have promise for the treatment of transfusion-related iron overload, restenosis after coronary artery angioplasty, cancer, and oxidative injury associated with acute myocardial infarction and transplantation. Critical Issues: To be clinically effective, iron chelators should be able to rapidly enter cells and chelate iron at key intracellular sites. Desferri-exochelins, and other lipid-soluble chelators, can readily cross cell membranes and remove intracellular free iron; whereas deferoxamine, which is lipid insoluble, cannot do so. Clinical utility also requires that the chelators be nontoxic, which, we hypothesize, includes the capability to prevent iron from catalyzing free radical reactions which produce center dot OH or other reactive oxygen species. Lipid-soluble iron chelators currently available for clinical application are bidentate (deferiprone) or tridentate (desferasirox) molecules that do not block all six sites on the iron molecule capable of catalyzing free radical reactions. In contrast, desferriexochelins are hexadentate molecules, and by forming a one-to-one binding relationship with iron, they prevent free radical reactions. Future Directions: Clinical studies are needed to assess the utility of desferri-exochelins in the treatment of iron-dependent pathological disorders.
机译:启示:Exochelins是结核分枝杆菌的脂溶性和水溶性铁载体,具有独特的特性,使其具有非凡的药理作用。 Exochelins可用作探针来解释铁在正常和病理状态下的作用,并且由于Exochelins可以快速穿过细胞膜并螯合细胞内的铁而几乎没有毒性,甚至没有毒性,因此Exochelins可能可用于治疗多种铁依赖性病理现象。最新进展:在动物模型中,exochelins被证明具有治疗与输血有关的铁超负荷,冠状动脉血管成形术后的再狭窄,癌症以及与急性心肌梗塞和移植相关的氧化损伤的潜力。关键问题:为达到临床效果,铁螯合剂应能够迅速进入细胞并在关键的细胞内部位螯合铁。 Desferri-exochelins和其他脂溶性螯合剂可轻松穿过细胞膜并去除细胞内游离铁。而脂质不溶的去铁胺则不能。临床实用性还要求螯合剂是无毒的,我们假设它具有防止铁催化产生中心点OH或其他活性氧物种的自由基反应的能力。目前可用于临床的脂溶性铁螯合剂是二齿(去铁酮)或三齿(去甲硅氧酮)分子,它们不会阻断铁分子上能够催化自由基反应的所有六个位点。相反,去铁螯合素是六齿分子,通过与铁形成一对一的结合关系,它们可以防止自由基反应。未来方向:需要进行临床研究以评估去铁蛋白-螯合蛋白在铁依赖性病理性疾病治疗中的作用。

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