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Optimisation of the synthesis of vancomycin-selective molecularly imprinted polymer nanoparticles using automatic photoreactor

机译:使用自动光反应器优化万古霉素选择性分子印迹聚合物纳米颗粒的合成

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摘要

A novel optimized protocol for solid-state synthesis of molecularly imprinted polymer nanoparticles (nanoMIPs) with specificity for antibiotic vancomycin is described. The experimental objective was optimization of the synthesis parameters (factors) affecting the yield of obtained nanoparticles which have been synthesized using the first prototype of an automated solid-phase synthesizer. Applications of experimental design (or design of experiments) in optimization of nanoMIP yield were carried out using MODDE 9.0 software. The factors chosen in the model were the amount of functional monomers in the polymerization mixture, irradiation time, temperature during polymerization, and elution temperature. In general, it could be concluded that the irradiation time is the most important and the temperature was the least important factor which influences the yield of nanoparticles. Overall, the response surface methodology proved to be an effective tool in reducing time required for optimization of complex experimental conditions.
机译:描述了一种新型的优化方法,用于固态合成分子印迹聚合物纳米颗粒(nanoMIP),对抗生素万古霉素具有特异性。实验目的是优化影响使用自动固相合成仪的第一个原型合成的获得的纳米粒子的产率的合成参数(因素)。使用MODDE 9.0软件进行了实验设计(或实验设计)在优化nanoMIP产量中的应用。在模型中选择的因素是聚合混合物中功能性单体的数量,辐照时间,聚合过程中的温度和洗脱温度。通常,可以得出结论,辐照时间是影响纳米颗粒产率的最重要因素,而温度是最不重要的因素。总体而言,响应面方法论被证明是减少优化复杂实验条件所需时间的有效工具。

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