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首页> 外文期刊>ACS nano >Microfluidic Synthesis of Hybrid Nanoparticles with Controlled Lipid Layers: Understanding Flexibility-Regulated Cell-Nanoparticle Interaction
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Microfluidic Synthesis of Hybrid Nanoparticles with Controlled Lipid Layers: Understanding Flexibility-Regulated Cell-Nanoparticle Interaction

机译:具有受控脂质层的杂化纳米粒子的微流合成:了解柔韧性调节细胞-纳米粒子的相互作用。

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摘要

The functionalized lipid shell of hybrid nanoparticles plays an important role for improving their biocompatibility and in vivo stability. Yet few efforts have been made to critically examine the shell structure of nanoparticles and its effect on cell particle interaction. Here we develop a microfluidic chip allowing for the synthesis of structurally well-defined lipid-polymer nanoparticles of the same sizes, but covered with either lipid-monolayer-shell (MPs, monolayer nanoparticles) or lipid-bilayer-shell (BPs, bilayer nanoparticles). Atomic force microscope and atomistic simulations reveal that MPs have a lower flexibility than BPs, resulting in a more efficient cellular uptake and thus anticancer effect than BPs do. This flexibility-regulated cell particle interaction may have important implications for designing drug nanocarriers.
机译:杂化纳米颗粒的功能化脂质壳对于改善其生物相容性和体内稳定性起着重要作用。然而,几乎没有做出任何努力来严格检查纳米颗粒的壳结构及其对细胞颗粒相互作用的影响。在这里,我们开发了一种微流体芯片,可以合成结构相同的大小明确的脂质聚合物纳米颗粒,但覆盖有脂质单层壳(MP,单层纳米颗粒)或脂质双层壳(BP,双层纳米颗粒) )。原子力显微镜和原子模拟表明,MP的柔韧性比BP低,导致细胞吸收效率更高,因此抗癌作用比BP高。这种柔性调节的细胞颗粒相互作用可能对设计药物纳米载体具有重要意义。

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