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Dynamic nanosurface reconfiguration by host–guest supramolecular interactions

机译:通过主-客体动态nanosurface重新配置超分子相互作用

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摘要

The dynamic functionalization of the nanoparticle surface with biocompatible coatings is a critical step towards the development of functional nano-sized systems. While covalent approaches have been broadly exploited in the stabilization of nanoparticle colloidal systems, these strategies hinder the dynamic nanosurface chemical reconfiguration. Supramolecular strategies based on specific host–guest interactions hold promise due to their intrinsic reversibility, self-healing capabilities and modularity. Host/guest couples have recently been implemented in nanoparticle platforms for the exchange and release of effector molecules. However, the direct exchange of biocompatible hydrophilic oligomers (e.g. peptides) for the modulation of the surface charge and chemical properties of nanoparticles still remains a challenge. Here, we show the intracellular reconfiguration of nanoparticles by a host/guest mechanism with biocompatible oligomeric competitors. The surface of gold nanoparticles was functionalized with cyclodextrin hosts and the guest exchange was studied with biocompatible mono and divalent adamantyl competitors. The systematic characterization of the size and surface potential of the host/guest nanoparticles allowed the optimization of the binding and the stabilization properties of these supramolecular systems. The in cellulo host/guest-mediated direct reconfiguration of the peptide layer at the surface of nanoparticles is achieved by controlling the valence of adamantane-equipped peptides. This work demonstrates that host/guest supramolecular systems can be exploited for the direct exchange of pendants at the surface of nanoparticles and the intracellular dynamic chemical reconfiguration of biocompatible colloidal systems.
机译:的动态功能化纳米颗粒表面可以使涂层的生物相容性是至关重要的一步的发展功能纳米级系统。已经被广泛利用在稳定吗纳米颗粒的胶体系统,这些动态nanosurface策略阻碍化学重新配置。基于特定的主-客体策略交互控制由于其固有的承诺和可逆性,自我修复能力模块化。在纳米平台实现交换和效应分子的释放。然而,生物相容性的直接交换亲水低聚物(如肽)灯的表面电荷和化学纳米粒子的性质仍然是一个挑战。纳米颗粒的重新配置主机/客人机制与生物相容性的低聚物的竞争对手。与环糊精功能化主机和客人与生物相容性的交换进行了研究mono和二阶adamantyl竞争对手。系统的大小和特性纳米颗粒表面电位的主机/客人允许的优化和有约束力这些超分子的稳定特性系统。直接肽层的重新配置纳米粒子的表面是通过控制adamantane-equipped的价肽。超分子系统可以利用的吊坠的表面的直接交换纳米颗粒和细胞内动态化学重组的生物相容性胶体系统。

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