Eleta-Lopez Aitziber, Etxebarria Juan, Reichardt Niels-Christian, Georgieva Radostina, Bäumler Hans, Toca-Herrera José L
CIC nanoGUNE Consolider, Tolosa Hiribidea 20018 Donostia/San Sebastian, Spain; Biosurfaces Unit, CIC biomaGUNE, Miramon Pasealekua 182, 20009 Donostia/San Sebastian, Spain.
Biofunctional Nanomaterials Unit, CIC biomaGUNE, Miramon Pasealekua 182, 20009 Donostia/San Sebastian, Spain.
Colloids Surf B Biointerfaces. 2015 Oct 1;134:355-62. doi: 10.1016/j.colsurfb.2015.06.063. Epub 2015 Jul 6.
The adsorption of proteins on surfaces often results in a change of their structural behavior and consequently, a loss of bioactivity. One experimental method to study interactions on a molecular level is single molecular force spectroscopy that permits to measure forces down to the pico-newton range. In this work, the binding force between human serum albumin (HSA), covalently immobilized on glutaraldehyde modified gold substrates, and ibuprofen sodium salt was studied by means of single molecular force spectroscopy. First of all, a protocol was established to functionalize atomic force microscopy (AFM) tips with ibuprofen. The immobilization protocol was additionally tested by quartz crystal microbalance with dissipation (QCM-D) and contact angle measurements. AFM was used to characterize the adsorption of HSA on gold substrates, which lead to a packed monolayer of thickness slightly lower than the reported value in solution. Finally, single molecule spectroscopy results were used to characterize the binding force between albumin and ibuprofen and calculate the distance of the transition state (0.6 nm) and the dissociation rate constant (0.055 s(-1)). The results might indicate that part of the adsorbed protein still preserves its functionality upon adsorption.
蛋白质在表面的吸附通常会导致其结构行为发生变化,进而丧失生物活性。一种在分子水平上研究相互作用的实验方法是单分子力谱,它能够测量低至皮牛范围的力。在这项工作中,通过单分子力谱研究了共价固定在戊二醛修饰金基底上的人血清白蛋白(HSA)与布洛芬钠盐之间的结合力。首先,建立了用布洛芬对原子力显微镜(AFM)针尖进行功能化的方案。还用石英晶体微天平耗散技术(QCM-D)和接触角测量对固定方案进行了测试。AFM用于表征HSA在金基底上的吸附情况,结果显示形成了紧密排列的单层,其厚度略低于溶液中报道的值。最后,利用单分子光谱结果表征白蛋白与布洛芬之间的结合力,并计算过渡态距离(0.6纳米)和解离速率常数(0.055 s⁻¹)。结果可能表明,部分吸附的蛋白质在吸附后仍保留其功能。