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Modular Assembly of Red Blood Cell Superstructures from Metal-Organic Framework Nanoparticle-Based Building Blocks

机译:基于金属 - 有机框架纳米粒子的建筑块的红细胞上层建筑模块化组装

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摘要

Bio/artificial hybrid nanosystems based on biological matter and synthetic nanoparticles (NPs) remain a holy grail of materials science. Herein, inspired by the well-defined metal-organic framework (MOF) with diverse chemical diversities, the concept of "armored red blood cells" (armored RBCs) is introduced, which are native RBCs assembled within and protected by a functional exoskeleton of interlinked MOF NPs. Exoskeletons are generated within seconds through MOF NP interlocking based on metal-phenolic coordination and RBC membrane/NP complexation via hydrogen-bonding interactions at the cellular interface. Armored RBC formation is shown to be generalizable to many classes of MOF NPs or any NPs that can be coated by MOF. Moreover, it is found that armored RBCs preserve the original properties of RBCs (such as oxygen carrier capability and good ex ovo/in vivo circulation property) and show enhanced resistance against external stressors (like osmotic pressure, detergent, toxic NPs, and freezing conditions). By modifying the physicochemical properties of MOF NPs, armored RBCs provide the capability for blood nitric oxide sensing or multimodal imaging. The synthesis of armored RBCs is straightforward, reliable, and reversible and hence, represent a new class of hybrid biomaterials with a broad range of functionalities.
机译:基于生物物质和合成纳米粒子(NPS)的生物/人造杂交纳米系统仍然是材料科学的圣杯。这里,由多样性化学多样性的明确定义的金属 - 有机框架(MOF)的启发,引入了“装甲红细胞”(装甲红细胞)(装甲红细胞)的概念,其是由内部组装并受相互关联的功能性外骨骼保护的天然RBC。 MOF NPS。通过基于金属酚类协调和RBC膜/ NP络合通过细胞界面的氢键相互作用在几秒内通过MOF NP互锁而产生外骨骼。 ARMORION RBC形成被证明可以概括为许多类MOF NPS或任何可以由MOF涂覆的NPS。此外,发现铠装RBCS保留RBCS的原始性质(如氧载体能力和良好的EX OVO /体内循环性能),并显示出对外部压力源的增强抗性(如渗透压,洗涤剂,有毒NPS和冷冻条件)。通过修改MOF NPS的物理化学特性,铠装RBC提供血液一氧化氮感应或多式联成像的能力。铠装RBC的合成是简单的,可靠性和可逆的,因此代表了一种具有广泛功能的新类杂化生物材料。

著录项

  • 来源
    《Advanced Functional Materials》 |2021年第10期|2005935.1-2005935.12|共12页
  • 作者单位

    Univ New Mexico Ctr Microengn Mat Albuquerque NM 87131 USA|Univ New Mexico Dept Chem & Biol Engn Albuquerque NM 87131 USA|Univ New Mexico Dept Internal Med Mol Med Albuquerque NM 87131 USA;

    Sichuan Univ Natl Engn Res Ctr Biomat Chengdu 610064 Peoples R China;

    South China Univ Technol Sch Biol & Biol Engn MOE Int Joint Res Lab Synthet Biol & Med Guangzhou 510006 Peoples R China;

    Univ New Mexico Dept Internal Med Mol Med Albuquerque NM 87131 USA;

    Univ New Mexico Dept Internal Med Mol Med Albuquerque NM 87131 USA;

    Univ New Mexico Dept Biochem & Mol Biol Albuquerque NM 87131 USA;

    South China Univ Technol Sch Biol & Biol Engn MOE Int Joint Res Lab Synthet Biol & Med Guangzhou 510006 Peoples R China;

    Univ New Mexico Ctr Microengn Mat Albuquerque NM 87131 USA|Univ New Mexico Dept Chem & Biol Engn Albuquerque NM 87131 USA;

    Univ New Mexico Ctr Microengn Mat Albuquerque NM 87131 USA|Univ New Mexico Dept Chem & Biol Engn Albuquerque NM 87131 USA;

    Univ Munich LMU Dept Chem Butenandtstr 11 D-81377 Munich Germany|Univ Munich LMU Ctr NanoSci CeNS Butenandtstr 11 D-81377 Munich Germany;

    Univ Munich LMU Dept Chem Butenandtstr 11 D-81377 Munich Germany|Univ Munich LMU Ctr NanoSci CeNS Butenandtstr 11 D-81377 Munich Germany|Basque Ctr Mat BCMat UPV EHU Sci Pk Leioa 48940 Spain;

    Univ New Mexico Ctr Microengn Mat Albuquerque NM 87131 USA|Univ New Mexico Dept Chem & Biol Engn Albuquerque NM 87131 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioapplications; biohybrid materials; metal#8208; organic frameworks; multifunction; red blood cells;

    机译:生物缺陷;生物中的材料;金属 - 有机框架;多功能;红细胞;
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