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Dual-Functionalized Nanostructured Biointerfaces byClick Chemistry

机译:双重功能的纳米结构生物界面点击化学

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摘要

The presentation of biologically active molecules at interfaces has made it possible to investigate the responses of cells to individual molecules in their matrix at a given density and spacing. However, more sophisticated methods are needed to create model surfaces that present more than one molecule in a controlled manner in order to mimic at least partially the complexity given in natural environments. Herein, we present dual-functionalized surfaces combining quasi-hexagonally arranged gold nanoparticles with defined spacings and a newly developed PEG-alkyne coating to functionalize the glass in the intermediate space. The PEG-alkyne coating provides an inert background for cell interactions but can be modified orthogonally to the gold nanoparticles with numerous azides, including spectroscopically active molecules, peptides, and biotin at controlled densities by the copper(I)-catalyzed azide alkyne click reaction. The simultaneous presentation of cRGD on the gold nanoparticles with 100 nm spacing and synergy peptide PHSRN in the space between has a striking effect on REF cell adhesion;cells adhere, spread, and form mature focal adhesions on the dual-functionalizedsurfaces, whereas cells cannot adhere on either monofunctional surface.Combining these orthogonal functionalization methods creates a newplatform to study precisely the crosstalk and synergy between differentsignaling molecules and clustering effects in ligand–receptorinteractions.
机译:生物活性分子在界面上的出现使得研究细胞以给定的密度和间距对基质中单个分子的反应成为可能。但是,需要更复杂的方法来创建以受控方式呈现一个以上分子的模型表面,以便至少部分模拟自然环境中给出的复杂性。在这里,我们提出了双重功能化的表面,该表面结合了具有确定间距的准六边形排列的金纳米颗粒和新开发的PEG-炔烃涂层,可对中间空间中的玻璃进行功能化。 PEG-炔烃涂层为细胞相互作用提供了惰性背景,但可以通过铜(I)催化的叠氮化物炔炔点击反应,以可控的密度与具有许多叠氮化物的金纳米颗粒正交修饰,包括光谱活性分子,肽和生物素。 cRGD在间隔为100 nm的金纳米颗粒上的同时呈递以及协同肽PHSRN在它们之间的间隔中对REF细胞的粘附具有显着影响;细胞在双功能化细胞上粘附,扩散并形成成熟的粘着斑表面,而细胞不能粘附在任一单功能表面上。结合这些正交功能化方法,创建了一个新的精确研究不同之间的串扰和协同作用的平台信号分子及其在配体-受体中的聚集效应互动。

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