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首页> 外文期刊>Nanoscale >A Ce-MOF@polydopamine composite nanozyme as an efficient scavenger for reactive oxygen species and iron in thalassemia disease therapy
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A Ce-MOF@polydopamine composite nanozyme as an efficient scavenger for reactive oxygen species and iron in thalassemia disease therapy

机译:一种Ce-MOF@polydopamine复合纳米酶作为地中海贫血疾病治疗中活性氧和铁的有效清除剂

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Patients with β-thalassemia are prone to complications such as cardiovascular diseases and secretory gland injury due to iron overload (IO) and reactive oxygen species (ROS) production caused by blood transfusions. Simultaneously scavenging ROS and eliminating IO using nanomedicine remains challenging. Herein, we designed a dual-functional Ce-based metal–organic framework@polydopamine (Ce-MOF@PDA) composite that integrates oxidative stress reduction and IO elimination and evaluated its protective effect on IO injury in thalassemia. Using Ce-MOF with multiple active sites as the core, dopamine, which can coordinate iron ions, was modified on the surface of Ce-MOF and spontaneously polymerized to obtain PDA with iron elimination ability. Dopamine modification also adjusted the Ce3+/Ce4+ ratio to further enhance the catalytic activity for scavenging ROS. Ce-MOF@PDA exhibited multiple nanozyme activities, such as superoxide dismutase- and catalase-like activities, and decreased iron-mediated oxidative stress levels in vitro. Furthermore, the serum ferritin levels and iron concentrations in the liver of IO mice were reduced following treatment with Ce-MOF@PDA, and the fecal clearance ability was comparable to that of deferoxamine. These results indicate that Ce-MOF@PDA can eliminate IO while scavenging ROS and reduce tissue damage caused by oxidative stress. Therefore, the Ce-MOF@PDA nanozyme is a promising therapeutic nanomedicine for treating thalassemia IO.
机译:β地中海贫血患者容易因输血引起的铁超负荷(IO)和活性氧(ROS)产生而出现心血管疾病和分泌腺损伤等并发症。使用纳米药物同时清除ROS和消除IO仍然具有挑战性。本文设计了一种集氧化应激降低和IO消除于一体的双功能Ce基金属-有机framework@polydopamine(Ce-MOF@PDA)复合材料,并评价了其对地中海贫血IO损伤的保护作用。以具有多个活性位点的Ce-MOF为核心,在Ce-MOF表面修饰可配位铁离子的多巴胺,并自发聚合,得到具有除铁能力的PDA。多巴胺修饰还调节了Ce3+/Ce4+比值,进一步增强了清除ROS的催化活性。Ce-MOF@PDA表现出多种纳米酶活性,如超氧化物歧化酶和过氧化氢酶样活性,并在体外降低铁介导的氧化应激水平。此外,Ce-MOF@PDA处理后IO小鼠肝脏中的血清铁蛋白水平和铁浓度降低,粪便清除能力与去铁胺相当。这些结果表明,Ce-MOF@PDA可以在清除ROS的同时消除IO,减少氧化应激引起的组织损伤。因此,Ce-MOF@PDA纳米酶是一种很有前途的治疗性纳米药物,用于治疗地中海贫血IO。

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