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Intracellular Antioxidants Dissolve Man-Made Antioxidant Nanoparticles: Using Redox Vulnerability of Nanoceria to Develop a Responsive Drug Delivery System

机译:细胞内抗氧化剂溶解人造抗氧化剂纳米颗粒:利用纳米氧化铈的氧化还原漏洞开发响应性药物传递系统

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Regeneratable antioxidant property of nanoceria has widely been explored to minimize the deleterious influences of reactive oxygen species. Limited information is, however, available regarding the biological interactions and subsequent fate of nanoceria in body fluids. This study demonstrates a surprising dissolution of stable and ultrasmall (4 nm) cerium oxide nanoparticles (CeO2 NPs) in response to biologically prevalent antioxidant molecules (glutathione, vitamin C). Such a redox sensitive behavior of CeO2 NPs is subsequently exploited to design a redox responsive drug delivery system for transporting anticancer drug (camptothecin). Upon exposing the CeO2 capped and drug loaded nanoconstruct to vitamin c or glutathione, dissolution-accompanied aggregation of CeO2 nanolids unleashes the drug molecules from porous silica to achieve a significant anticancer activity. Besides stimuli responsive drug delivery, immobilization of nanoceria onto the surface of mesoporous silica also facilitates us to gain a basic insight into the biotransformation of CeO2 in physiological mediums.
机译:纳米氧化铈的可再生抗氧化性能已得到广泛研究,以最大程度地减少活性氧的有害影响。但是,关于体液中纳米氧化铈的生物相互作用和后续命运的信息有限。这项研究表明,响应于生物学上普遍存在的抗氧化剂分子(谷胱甘肽,维生素C),稳定且超小(4 nm)的氧化铈纳米颗粒(CeO2 NPs)令人惊讶地溶解。 CeO2 NPs的这种对氧化还原敏感的行为随后被用于设计氧化还原反应性药物递送系统,以运输抗癌药物(喜树碱)。将封有CeO2且装载有药物的纳米结构暴露于维生素C或谷胱甘肽后,CeO2纳米脂质溶解伴随的聚集会从多孔二氧化硅中释放出药物分子,从而实现显着的抗癌活性。除了刺激响应性药物递送之外,将纳米氧化铈固定在中孔二氧化硅表面上还有助于我们获得对生理介质中CeO2的生物转化的基本了解。

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