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基于互穿聚合物网络的功能化光子液滴光学多传感器阵列用于人体血液分析。

Optical Multisensor Array with Functionalized Photonic Droplets by an Interpenetrating Polymer Network for Human Blood Analysis.

机构信息

School of Applied Chemical Engineering, Polymeric Nano Materials Laboratory, Kyungpook National University, Daegu 41566, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Oct 21;12(42):47342-47354. doi: 10.1021/acsami.0c15718. Epub 2020 Oct 8.

DOI:10.1021/acsami.0c15718
PMID:33030883
Abstract

Photonic solid-state cholesteric liquid crystal (CLC) droplets intertwined with a poly(acrylic acid) (PAA) network that has an interpenetrating polymer network (IPN) structure (referred to as photonic IPN CLC droplets) were used as individual sensors in the dots of a PAA-patterned array film after functionalization via immobilization of the receptors and a metal-ion treatment. The photonic IPN CLC droplets in the PAA-patterned array film were pH-responsive and showed an observable change in the reflected central color. This "smart" property, coupled with the photonic color response, makes these devices ideal photonic sensors. The immobilization of urease and phenylboronic acid on the PAA network allowed for the application of several 10 μm photonic IPN CLC droplets to the optical photonic biosensors through facilitated volumetric changes in the PAA network in response to urea and glucose analytes, with high selectivity for major components in human serum, acceptable sensitivity for use with human serum, and extreme stability due to a solid-state structure. The blueshift of the reflected color of the KOH-treated photonic IPN CLC droplets could be used for divalent metal-ion detection. The compartmentalized photonic IPN CLC droplets in the patterned array film could be used for multiple detection applications, as evidenced by the ability to conduct pH, divalent metal ion, urea, and glucose detections in one patterned array film. This new platform opens the door for many interesting applications with numerous combinations of responsive hydrogel matrices and receptors.

摘要

光子固态胆甾相液晶 (CLC) 液滴与具有互穿聚合物网络 (IPN) 结构的聚丙烯酸 (PAA) 网络交织(称为光子 IPN CLC 液滴),在功能化后用作 PAA 图案阵列膜中单个传感器的小点通过受体固定化和金属离子处理。PAA 图案阵列膜中的光子 IPN CLC 液滴对 pH 具有响应性,并表现出反射中心颜色的可观察变化。这种“智能”特性与光子颜色响应相结合,使这些设备成为理想的光子传感器。脲酶和苯硼酸在 PAA 网络上的固定化允许通过 PAA 网络对尿素和葡萄糖分析物的体积变化进行促进,将几个 10 μm 光子 IPN CLC 液滴应用于光学光子生物传感器,对人血清中的主要成分具有高选择性、对人血清具有可接受的灵敏度,并且由于固态结构具有极端稳定性。经 KOH 处理的光子 IPN CLC 液滴的反射颜色蓝移可用于检测二价金属离子。图案化阵列膜中分隔的光子 IPN CLC 液滴可用于多种检测应用,这证明了在一个图案化阵列膜中进行 pH、二价金属离子、尿素和葡萄糖检测的能力。这个新平台为许多有趣的应用打开了大门,具有响应性水凝胶基质和受体的多种组合。

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