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合成亲水性和导电性的分子印迹聚苯胺颗粒用于灵敏和选择性的蛋白质检测。

Synthesis of hydrophilic and conductive molecularly imprinted polyaniline particles for the sensitive and selective protein detection.

机构信息

The Key Laboratory of Food Colloids and Biotechnology, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi, Jiangsu 214122, China.

The Key Laboratory of Food Colloids and Biotechnology, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi, Jiangsu 214122, China.

出版信息

Biosens Bioelectron. 2017 Aug 15;94:39-46. doi: 10.1016/j.bios.2017.02.035. Epub 2017 Feb 24.

Abstract

In this work, a novel kind of water-dispersible molecular imprinted conductive polyaniline particles was prepared through a facile and efficient macromolecular co-assembly of polyaniline with amphiphilic copolymer, and applied as the molecular recognition element to construct protein electrochemical sensor. In our strategy, an amphiphilic copolymer P(AMPS-co-St) was first synthesized using 2-acrylamido-2-methyl-1-propanesulfonic acid (AMPS) and styrene (St) as monomer, which could co-assemble with PANI in aqueous solution to generate PANI particles driven by the electrostatic interaction. During this process, ovalbumin (OVA) as template protein was added and trapped into the PANI NPs particles owing to their interactions, resulting in the formation of molecular imprinted polyaniline (MIP-PANI) particles. When utilizing the MIP-PANI particles as recognition element, the resultant imprinted PANI sensor not only exhibited good selectivity toward template protein (the imprinting factor α is 5.31), but also a wide linear range over OVA concentration from 10 to 10mgmL with a significantly lower detection limit of 10mgmL, which outperformed most of reported OVA detecting methods. In addition, an ultrafast response time of less than 3min has also been demonstrated. The superior performance is ascribed to the water compatibility, large specific surface area of PANI particles and the electrical conductivity of PANI which provides a direct path for the conduction of electrons from the imprinting sites to the electrode surface. The outstanding sensing performance combined with its facile, quick, green preparation procedure as well as low production cost makes the MIP-PANI particles attractive in specific protein recognition and sensing.

摘要

在这项工作中,通过将聚苯胺与两亲性共聚物进行简单高效的大分子共聚,制备了一种新型的水分散性分子印迹导电聚苯胺粒子,并将其作为分子识别元件应用于构建蛋白质电化学传感器。在我们的策略中,首先合成了一种两亲性共聚物 P(AMPS-co-St),其使用 2-丙烯酰胺基-2-甲基-1-丙磺酸(AMPS)和苯乙烯(St)作为单体,可在水溶液中与 PANI 共聚,产生由静电相互作用驱动的 PANI 粒子。在此过程中,由于相互作用,卵清蛋白(OVA)作为模板蛋白被加入并捕获到 PANI NPs 粒子中,从而形成分子印迹聚苯胺(MIP-PANI)粒子。当将 MIP-PANI 粒子用作识别元件时,所得印迹 PANI 传感器不仅对模板蛋白表现出良好的选择性(印迹因子α为 5.31),而且对 OVA 浓度从 10 到 10mgmL 的线性范围很宽,检测限低至 10mgmL,优于大多数报道的 OVA 检测方法。此外,还表现出超快的响应时间,不到 3 分钟。优异的性能归因于 PANI 粒子的亲水性、大比表面积和 PANI 的导电性,这为印迹位点到电极表面的电子传导提供了直接途径。出色的传感性能结合其简便、快速、绿色的制备工艺以及低制造成本,使 MIP-PANI 粒子在特定蛋白质识别和传感方面具有吸引力。

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