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A Facile Approach to Functionalize Cell Membrane-Coated Nanoparticles

机译:一种功能化的细胞膜包覆纳米颗粒的简便方法

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摘要

Convenient strategies to provide cell membrane-coated nanoparticles (CM-NPs) with multi-functionalities beyond the natural function of cell membranes would dramatically expand the application of this emerging class of nanomaterials. We have developed a facile approach to functionalize CM-NPs by chemically modifying live cell membranes prior to CM-NP fabrication using a bifunctional linker, succinimidyl-[(N-maleimidopropionamido)-polyethyleneglycol] ester (NHS-PEG-Maleimide). This method is particularly suitable to conjugate large bioactive molecules such as proteins on cell membranes as it establishes a strong anchorage and enable the control of linker length, a critical parameter for maximizing the function of anchored proteins. As a proof of concept, we show the conjugation of human recombinant hyaluronidase, PH20 (rHuPH20) on red blood cell (RBC) membranes and demonstrate that long linker (MW: 3400) is superior to short linker (MW: 425) for maintaining enzyme activity, while minimizing the changes to cell membranes. When the modified membranes were fabricated into RBC membrane-coated nanoparticles (RBCM-NPs), the conjugated rHuPH20 can assist NP diffusion more efficiently than free rHuPH20 in matrix-mimicking gels and the pericellular hyaluronic acid matrix of PC3 prostate cancer cells. After quenching the unreacted chemical groups with polyethylene glycol, we demonstrated that the rHuPH20 modification does not reduce the ultra-long blood circulation time of RBCM-NPs. Therefore, this surface engineering approach provides a platform to functionlize CM-NPs without sacrificing the natural function of cell membranes.
机译:提供具有细胞膜天然功能以外的多功能性的细胞膜涂层纳米颗粒(CM-NP)的便捷策略将极大地扩展这种新兴的纳米材料的应用范围。我们已经开发了一种通过使用双功能接头琥珀酰亚胺基-[(N-马来酰亚胺丙酰胺基)-聚乙二醇]酯(NHS-PEG-马来酰亚胺)对CM-NP进行化学修饰来化学修饰活细胞膜的简便方法。该方法特别适用于在细胞膜上缀合大型生物活性分子(例如蛋白质),因为它可以建立牢固的锚定并能够控制接头长度,而接头长度是最大化锚定蛋白质功能的关键参数。作为概念验证,我们显示了人重组透明质酸酶PH20(rHuPH20)在红细胞(RBC)膜上的缀合,并证明长连接子(MW:3400)在维持酶方面优于短连接子(MW:425)活性,同时最大程度地减少细胞膜的变化。当将修饰的膜制成RBC膜包裹的纳米颗粒(RBCM-NPs)时,在基质模拟凝胶和PC3前列腺癌细胞的细胞周围透明质酸基质中,结合的rHuPH20比游离的rHuPH20可以更有效地帮助NP扩散。用聚乙二醇淬灭未反应的化学基团后,我们证明了rHuPH20修饰不会减少RBCM-NPs的超长血液循环时间。因此,这种表面工程方法提供了一个功能化CM-NP的平台,而不会牺牲细胞膜的天然功能。

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