首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Conjugating Ligands to an Equilibrated Nanoparticle Protein Corona Enables Cell Targeting in Serum
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Conjugating Ligands to an Equilibrated Nanoparticle Protein Corona Enables Cell Targeting in Serum

机译:将配体与平衡的纳米颗粒蛋白电晕偶联,可在血清中靶向细胞

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Targeting ligands are conjugated onto nanoparticles to increase their selectivity for diseased cells.However,they'become covered by serum proteins which prevent them from binding to target receptors.Here,we show that the nanoparticle protein corona achieved a maximum thickness in serum because the protein adsorption and desorption rates reached an equilibrium.Simulation experiments suggest that the number of molecular interactions between proteins decrease with distance from the nanoparticle surface until the forces are too weak to hold the proteins together.This results in an equilibration state between the proteins on the nanoparticle surface and in biological fluids.Conjugating targeting ligands to this equilibrated protein corona allowed the nanoparticles to bind to target cells in the presence of serum proteins.In contrast,conjugating targeting ligands directly to the nanoparticle surface resulted in a 55 reduction in binding to target cells in serum.We demonstrated this concept using two nanoparticle material types with different surface chemistries.We present a ligand-on-corona conjugation strategy that overcomes the negative impact of serum protein adsorption on nanoparticle cellular targeting.
机译:靶向配体与纳米颗粒偶联,以增加其对患病细胞的选择性。然而,它们被血清蛋白覆盖,阻止它们与靶受体结合。在这里,我们发现纳米颗粒蛋白质电晕在血清中达到了最大厚度,因为蛋白质的吸附和解吸速率达到了平衡。模拟实验表明,蛋白质之间的分子相互作用数量随着与纳米颗粒表面的距离而减少,直到力太弱而无法将蛋白质固定在一起。这导致纳米颗粒表面和生物体液中的蛋白质之间的平衡状态。将靶向配体与这种平衡的蛋白质电晕偶联,使纳米颗粒能够在血清蛋白存在下与靶细胞结合。相比之下,将靶向配体直接偶联到纳米颗粒表面导致血清中与靶细胞的结合减少 55%。我们使用两种具有不同表面化学性质的纳米颗粒材料类型来证明这一概念。我们提出了一种电晕配体偶联策略,该策略克服了血清蛋白吸附对纳米颗粒细胞靶向的负面影响。

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    Institute of Biomedical Engineering,University of Toronto,Toronto,Ontario MSS 3G9,Canada;

    Terrence Donnelly Centre for Cellular & Biomolecular Research,University of Toronto,Toronto,Ontario MSS 3E1,Canada;

    Institute of Biomedical Engineering University of Toronto,Toronto,Ontario MSS 3G9,Canada;

    Terrence Donnelly Centre for Cellular & Biomolecular Research,University of Toronto,Toronto,Ontario MSS 3E1,Canada;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 工程材料学;
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