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首页> 外文期刊>ACS nano >Erythroliposomes: Integrated Hybrid Nanovesicles Composed of Erythrocyte Membranes and Artificial Lipid Membranes for Pore-Forming Toxin Clearance
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Erythroliposomes: Integrated Hybrid Nanovesicles Composed of Erythrocyte Membranes and Artificial Lipid Membranes for Pore-Forming Toxin Clearance

机译:Erythroposomes:由红细胞膜和人工脂膜组成的集成杂合纳米粒子,用于孔形成毒素清除

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摘要

Pore-forming toxins (PFTs) are the most common bacterial virulence proteins and play a significant role in the pathogenesis of bacterial infections; thus, PFTs are an attractive therapeutic target in bacterial infections. Inspired by the pore-forming process and mechanism of PFTs, we designed an integrated hybrid nanovesicle-the erythroliposome (called the RM-PL)-for PFT detoxification by fusing natural red blood cell (RBC) membranes with artificial lipid membranes. The lipid and RBC membranes were mutually beneficial when integrated into a hybrid nanovesicle structure. The RBC membrane endowed RM-PLs with the capacity for detoxification, while the PEGylated lipid membrane stabilized the RM-PLs and greatly improved the detoxification capacity of the RBC membrane. With alpha-hemolysin (Hl alpha) as a model PFT, we demonstrated that RM-PLs could not only significantly reduce the toxicity of Hl alpha to erythrocytes in vitro but also effectively sponge Hl alpha in vivo and rescue mice from Hl alpha-induced damage. Moreover, the high detoxification capacity of RM-PLs was shown to be partly related to the expression of the Hl alpha receptor protein, a disintegrin and metalloproteinase domain-containing protein 10 on the RBC membrane. Consequently, as a component integrating natural and artificial materials, the erythroliposome nanoplatform inspires potential strategies for antivirulence therapy.
机译:孔形成毒素(PFT)是最常见的细菌毒力蛋白,并在细菌感染的发病机制中发挥重要作用;因此,PFT是细菌感染的有吸引力的治疗靶标。受到PFT的孔隙成分和机理的启发,我们设计了一种集成的杂交纳米粒度 - 通过用人工脂膜的自然红细胞(RBC)膜熔化天然红细胞(RBC)膜来实现杂交纳米粒子(称为RM-PL)。当集成到杂化纳米粒子结构中时,脂质和RBC膜互利。 RBC膜具有排毒能力的RM-PLS,而Pegymated脂膜稳定RM-PLS并大大提高了RBC膜的排毒能力。用α-溶血素(HLα)作为模型PFT,我们证明RM-PLS不仅可以显着降低体外HLα对红细胞的毒性,而且有效地将HLα在体内海绵αα-α-α诱导的损伤中的血管血液中的αα 。此外,RM-PLS的高解毒能力显示为与RBC膜上的HLα受体蛋白质,含有Disintegl和金属蛋白酶域域域10的表达部分部分。因此,作为整合天然和人造材料的组分,ErythroIposomeNoplatform激发了抗病毒治疗的潜在策略。

著录项

  • 来源
    《ACS nano》 |2019年第4期|共12页
  • 作者单位

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Shanghai Univ Tradit Chinese Med Innovat Res Inst Tradit Chinese Med Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Shanghai Ind Technol Inst Shanghai Ctr Bioinformat Technol Shanghai 201203 Peoples R China;

    Shanghai Ind Technol Inst Shanghai Ctr Bioinformat Technol Shanghai 201203 Peoples R China;

    Shanghai Univ Tradit Chinese Med Innovat Res Inst Tradit Chinese Med Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

    Fudan Univ Sch Pharm Dept Pharmaceut Shanghai 201203 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    erythroliposome; detoxification; hybrid nanovesicle; pore-forming toxins; red blood cell membrane; artificial lipid membrane;

    机译:红细胞体;解毒;杂交纳米粒子;孔形成毒素;红细胞膜;人工脂膜;

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