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Molecularly Imprinted Nanoparticles (NanoMIPs) Selective for Proteins: Optimization of a Protocol for Solid-Phase Synthesis Using Automatic Chemical Reactor

机译:用于蛋白质的分子印迹纳米颗粒(NanoMIPS)选择性:使用自动化学反应器优化固相合成的方案

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摘要

Molecularly imprinted polymer nanoparticles (nanoMIPs) are receiving broad interest as robust and highly selective synthetic receptors for a variety of molecules. Due to their stability, inexpensive synthesis and easy implementation, they are considered a promising alternative to antibodies in sensors, diagnostics and separation applications. The most challenging targets for the production of synthetic receptors are proteins due to their fragile nature and the multitude of possible binding sites in their structure. Herein, we describe the modification and optimization of the protocol for synthesis of nanoMIPs with specificity for proteins using the prototype of an automated solid-phase synthesizer. Using an automated system gives an advantage for the simple, fast and fully controlled, reproducible production of nanoMIPs. The molecular imprinting in the reactor is performed using a template covalently immobilized on a solid support, in mild conditions suitable for preserving protein native structure. The validation of the protocol was made by assessing the ability to regenerate a solid-phase, and by measuring affinity and specificity of nanoparticles. As a model protein, we have chosen trypsin since its enzymatic activity can be easily monitored by using a commercial colorimetric assay. Different protocols were tested for their ability to improve the yield of high affinity nanoparticles in the final elution.
机译:分子印迹聚合物纳米颗粒(NanoMIPS)是为各种分子的鲁棒和高度选择性合成受体接受广泛的兴趣。由于它们的稳定性,廉价的合成和易于实现,它们被认为是传感器,诊断和分离应用中的抗体的有希望的替代品。由于其结构中的脆性性质和众多可能的结合位点,合成受体产生的最具挑战性的靶标是蛋白质。在此,我们描述了使用自动化固相合成器的原型的蛋白质合成纳米填充的方案的改性和优化。使用自动化系统具有简单,快速,完全控制,可重复的纳米生产的优势。反应器中的分子印迹使用共价固定在固体载体上的模板,适用于保留蛋白质天然结构的温和条件进行。通过评估再生固相的能力,并通过测量纳米颗粒的亲和力和特异性来进行方案的验证。作为模型蛋白质,我们选择了胰蛋白酶,因为通过使用商业比色测定可以容易地监测其酶活性。测试了不同方案的能力,以便在最终洗脱中提高高亲和力纳米颗粒的产率。

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