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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Controlled Modification of Protein-Repelling Self-Assembled Monolayers by Ultraviolet Light: The Effect of the Wavelength
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Controlled Modification of Protein-Repelling Self-Assembled Monolayers by Ultraviolet Light: The Effect of the Wavelength

机译:紫外线对蛋白质排斥自组装单分子膜的受控修饰:波长的影响

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Exposure of protein-repeEing oligo (ethylene glycol) (OEG) terminated alkanethiolate (AT) monolayers to ultraviolet (UV) light results in the damage of the OEG chains and photooxidation of the thiolate headgroups, which can be used for controlled tuning of protein-repelling properties within the so-called UV direct writing (UVDW) approach or for the preparation of mixed OEG-AT/specific-receptor films by so-called UV-promoted exchange reaction (UVPER). Using several model systems, we studied the effect of the wavelength (254—365 nm) on the course and efficiency of UVDW and UVPER applied to different OEG-AT matrices. The cross sections of the UV-induced damage were found to decrease significantly with increasing wavelength of UV light. In accordance with this behavior, the efficiencies of both UVDW and UVPER were maximal at a wavelength of 254 nm, somewhat lower at 313 nm, and lowest at 365 nm. Both UVDW and UVPER allowed a fine-tuning of protein affinity for nonspecific and specific adsorption, respectively, but UVDW did not occur below a certain, wavelength-dependent threshold dose. Performing UVPER below this dose enables us to suppress possible nonspecific adsorption of proteins even in the case of noncomplete exchange of the UV-damaged molecules of the primary OEG-AT matrix by receptor-bearing moieties. The obtained results are of direct relevance for the preparation of high-quality mixed OEG-AT/specific-receptor films and the fabrication of complex protein patterns by UVDW and UVPER lithography.
机译:重复蛋白质的寡聚乙二醇(OEG)末端的链烷硫醇盐(AT)单层暴露于紫外线(UV)会导致OEG链受损和硫醇盐头基的光氧化,可用于控制蛋白质-在所谓的紫外线直接写入(UVDW)方法中具有排斥性,或者通过所谓的紫外线促进的交换反应(UVPER)制备混合的OEG-AT /特定受体膜。我们使用几种模型系统研究了波长(254-365 nm)对UVDW和UVPER应用于不同OEG-AT矩阵的过程和效率的影响。发现紫外线引起的损伤的横截面随着紫外线波长的增加而显着降低。根据此行为,UVDW和UVPER的效率在254 nm波长处最大,在313 nm处稍低,在365 nm处最低。 UVDW和UVPER分别允许对非特异性和特异性吸附的蛋白质亲和力进行微调,但在一定的,波长依赖性阈值剂量以下,UVDW不会发生。在低于此剂量的条件下执行UVPER,即使在带有受体的部分不完全交换主要OEG-AT基质的UV损伤分子的情况下,也可以抑制蛋白质的非特异性吸附。获得的结果与制备高质量的OEG-AT /特异性受体混合膜以及通过UVDW和UVPER光刻技术制造复杂的蛋白质图案直接相关。

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