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Membrane mimetic surface functionalization of nanoparticles: Methods and applications

机译:纳米颗粒的膜模拟表面功能化:方法和应用

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摘要

Nanoparticles (NPs), due to their size-dependent physical and chemical properties, have shown remarkable potential for a wide range of applications over the past decades. Particularly, the biological compatibilities and functions of NPs have been extensively studied for expanding their potential in areas of biomedical application such as bioimaging, biosensing, and drug delivery. In doing so, surface functionalization of NPs by introducing synthetic ligands and/or natural biomolecules has become a critical component in regards to the overall performance of the NP system for its intended use. Among known examples of surface functionalization, the construction of an artificial cell membrane structure, based on phospholipids, has proven effective in enhancing biocompatibility and has become a viable alternative to more traditional modifications, such as direct polymer conjugation. Furthermore, certain bioactive molecules can be immobilized onto the surface of phospholipid platforms to generate displays more reminiscent of cellular surface components. Thus, NPs with membrane-mimetic displays have found use in a range of bioimaging, biosensing, and drug delivery applications. This review herein describes recent advances in the preparations and characterization of integrated functional NPs covered by artificial cell membrane structures and their use in various biomedical applications.
机译:纳米粒子(NPs)由于其尺寸依赖性的物理和化学特性,在过去几十年中显示出了广泛的应用潜力。特别地,已经广泛研究了NP的生物学相容性和功能,以扩展其在生物医学应用领域中的潜力,例如生物成像,生物传感和药物递送。在此过程中,通过引入合成配体和/或天然生物分子对NP进行表面功能化已成为就NP系统预期用途而言的总体性能的关键组成部分。在表面功能化的已知实例中,基于磷脂的人工细胞膜结构的构建已被证明可有效地增强生物相容性,并已成为更传统修饰(例如直接聚合物缀合)的可行替代方法。此外,某些生物活性分子可以固定在磷脂平台的表面上,以产生更让人联想到细胞表面成分的展示。因此,已发现具有膜模拟显示器的NP在一系列生物成像,生物传感和药物输送应用中得到了应用。本文的这篇综述描述了人工细胞膜结构所覆盖的整合功能性NP的制备和表征及其在各种生物医学应用中的使用方面的最新进展。

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