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Preliminary Study on Repeatability of Molecular Recognition Capability of a Silica-Based Molecularly Imprinted Polymer

机译:基于二氧化硅的分子印迹聚合物的分子识别能力的可重复性研究

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Molecular imprinting, a templated polymerization technique, is a promising method to prepare a functional polymeric network for targeted binding of molecules in a selective recognition process. In this work, a silica-based (polysiloxane) polymer was utilized in a sol-gel process to fabricate a molecularly imprinted polymer (MIP). The manufactured MIP was imprinted with a template molecule, lysozyme. To test this MIP's molecular recognitive function, the template molecule lysozyme was extracted first; then lysozyme and a competitive molecule, RNase A, were rebound; then lysozyme and RNase A were released and re-bound for a second time in order to evaluate the recognition repeatability of the MIP. Analysis of the repeated testing results implies that the template molecules' conformation and affinity played a great role in affecting the recognition accuracy and efficiency.
机译:分子印迹,模板化聚合技术,是制备用于在选择性识别过程中分子的靶向结合的功能性聚合物网络的有希望的方法。在这项工作中,使用二氧化硅(聚硅氧烷)聚合物在溶胶 - 凝胶法中用于制造分子印迹聚合物(MIP)。制造的MIP与模板分子,溶菌酶印记。为了测试这种MIP的分子特征功能,首先提取模板分子溶菌酶;然后反弹溶菌酶和竞争性分子,rnase a。然后释放溶菌酶和RNase A并重新绑定第二次以评估壁的识别可重复性。对重复测试结果的分析意味着模板分子的构象和亲和力在影响识别准确性和效率方面发挥了巨大作用。

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