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Methodology to study polymers interaction by surface plasmon resonance imaging

机译:通过表面等离子体共振成像研究聚合物相互作用的方法

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Graphical abstract Display Omitted Abstract The surface plasmon resonance (SPR) technique has been primarily used in the field of biology, in particular for the study of antibody-antigen interactions. Recently, polymers were introduced to form inclusion complexes. We describe here, a methodology based on surface plasmon resonance imaging to study water-resistant and reversible inclusion complexes using systems which are compatible with a cosmetic use. The purpose of this study is to follow in real time the interaction between two polymers. To carry out this study: ? A biochip based on a covalent binding of one “host polymer” on a gold-activated surface was developed. ? The binding of the host polymer to a guest polymer was monitored. ? The presence of interactions between the β-cyclodextrins groups of the host polymer and the adamantyl functional groups of the guest polymer and the possibility of dissociating the complex were established. This technique allowed carrying out parallel assays for optimizing the amount of complexes formed, the host polymer being spotted at five concentrations. It was then possible to study the influence of the concentration in host system for two concentrations of the guest polymer. The concentration in the host polymer yielding the highest immobilization of the guest system was further determined.
机译:图形抽象显示省略的摘要表面等离振子共振(SPR)技术已主要用于生物学领域,尤其是用于抗体-抗原相互作用的研究。最近,引入聚合物以形成包合物。我们在这里介绍一种基于表面等离振子共振成像的方法,以使用与化妆品用途兼容的系统研究耐水和可逆的包合物。这项研究的目的是实时跟踪两种聚合物之间的相互作用。进行这项研究:开发了一种基于一种“主体聚合物”在金活化表面上的共价结合的生物芯片。 ?监测主体聚合物与客体聚合物的结合。 ?确定了主体聚合物的β-环糊精基团与客体聚合物的金刚烷基官能团之间存在相互作用以及解离复合物的可能性。该技术允许进行平行测定以优化所形成的络合物的量,将主体聚合物以五个浓度点样。然后有可能研究两种浓度的客体聚合物在宿主系统中浓度的影响。进一步确定产生客体系统最高固定化的主体聚合物中的浓度。

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