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基于协同驱动力的超分子光子水凝胶用于高灵敏度碱性磷酸酶检测

Supramolecular Photonic Hydrogel for High-Sensitivity Alkaline Phosphatase Detection via Synergistic Driving Force.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, P. R. China.

College of Computer Science and Technology, Jilin University, Changchun, 130012, P. R. China.

出版信息

Small. 2023 Mar;19(12):e2206461. doi: 10.1002/smll.202206461. Epub 2023 Jan 1.

Abstract

Structurally-colored photonic hydrogels which are fabricated by introducing hydrogels into thin films or photonic crystal structures are promising candidates for biosensing. Generally, the design of photonic hydrogel biosensors is based on the sensor-analyte interactions induced charge variation within the hydrogel matrix, or chemically grafting binding sites onto the polymer chains, to achieve significant volume change and color variation of the photonic hydrogel. However, relatively low anti-interference capability or complicated synthesis hinder the facile and low-cost fabrication of high-performance photonic hydrogel biosensors. Here, a facilely prepared supramolecular photonic hydrogel biosensor is developed for high-sensitivity detection of alkaline phosphatase (ALP), which is an extensively considered clinical biomarker for a variety of diseases. Responding to ALP results in the broken supramolecular crosslinking and thus increased lattice distancing of the photonic hydrogel driven by synergistic repulsive force between nanoparticles embedded in photonic crystal structure and osmotic swelling pressure. The biosensor shows sensitivity of 7.3 nm spectral shift per mU mL ALP, with detection limit of 0.52 mU mL . High-accuracy colorimetric detection can be realized via a smartphone, promoting point-of-care sensing and timely diagnosis of related pathological conditions.

摘要

结构色光子凝胶是通过将水凝胶引入薄膜或光子晶体结构中而制备的,它们是生物传感的有前途的候选者。通常,光子水凝胶生物传感器的设计基于传感器-分析物相互作用在水凝胶基质内引起的电荷变化,或者通过化学接枝将结合位点接到聚合物链上,以实现光子水凝胶的显著体积变化和颜色变化。然而,相对较低的抗干扰能力或复杂的合成阻碍了高性能光子水凝胶生物传感器的简单和低成本制造。在这里,开发了一种简便制备的超分子光子水凝胶生物传感器,用于高灵敏度检测碱性磷酸酶(ALP),ALP 是多种疾病广泛考虑的临床生物标志物。响应于 ALP 会导致超分子交联断裂,从而在嵌入光子晶体结构中的纳米粒子之间的协同排斥力和渗透膨胀压力的驱动下,光子水凝胶的晶格间距增大。该生物传感器对每毫单位毫升 ALP 的光谱位移的灵敏度为 7.3nm,检测限为 0.52mU mL 。通过智能手机可以实现高精度比色检测,促进了即时检测和相关病理状况的及时诊断。

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