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首页> 外文期刊>Hemoglobin: International Journal for Hemoglobin Research >The role of iron and chelators on infections in iron overload and non iron loaded conditions: prospects for the design of new antimicrobial therapies.
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The role of iron and chelators on infections in iron overload and non iron loaded conditions: prospects for the design of new antimicrobial therapies.

机译:铁和螯合剂在铁超负荷和非铁负荷条件下对感染的作用:设计新的抗微生物疗法的前景。

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摘要

Iron overload is known to exacerbate many infectious diseases. Infectious complications are considered to be the second main cause of morbidity and mortality in iron loaded thalassemia patients. Effective chelation therapy leading to the normalization of the iron stores could reduce the incidence of related infections. Microbial pathogens could obtain growth-essential iron from healthy hosts. Conversely, iron withholding and/or removal is an important defense strategy for mammalian hosts, which is primarily accomplished by the iron chelating proteins transferrin and lactoferrin. Chelating drugs could prevent microbial growth and play an essential role in antimicrobial therapeutic strategies. Specific mechanisms and interactions apply in the transfer or withholding of iron between the chelating drugs deferoxamine (DFO), deferiprone (L1) and deferasirox (DFRA) with microbial pathogens such as bacteria, fungi and protozoa. In some cases, chelators and in particular DFO, could act as a siderophore for the microbe and exacerbate infections such as yersiniasis and mucormycosis. Deferiprone appears to have the highest therapeutic index for long-term antimicrobial activity and the highest tissue penetration, including access to the brain. Selection of specific chelation therapy protocols could be considered in conditions where other antimicrobial therapies have failed or where resistance has developed to existing therapies.
机译:铁超载已知会加剧许多传染病。感染性并发症被认为是铁负荷地中海贫血患者发病和死亡的第二个主要原因。有效的螯合疗法可导致铁存储正常化,可以减少相关感染的发生率。微生物病原体可以从健康宿主获得必需的铁。相反,铁的保留和/或去除是哺乳动物宿主的重要防御策略,这主要是通过铁螯合蛋白运铁蛋白和乳铁蛋白实现的。螯合剂可以防止微生物生长,并在抗菌治疗策略中发挥重要作用。螯合剂去铁胺(DFO),去铁酮(L1)和去铁曲(DFRA)与微生物病原体(例如细菌,真菌和原生动物)之间的铁转移或保留过程中应用了特定的机制和相互作用。在某些情况下,螯合剂,尤其是DFO,可能会充当微生物的铁载体,并加剧诸如耶尔氏菌病和毛霉菌病的感染。 Deferiprone似乎具有长期抗微生物活性的最高治疗指数和最高的组织渗透性,包括进入大脑的能力。在其他抗菌疗法失败或对现有疗法产生耐药性的情况下,可以考虑选择特定的螯合疗法方案。

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