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三维表面增强拉曼散射活性水凝胶微珠实现生物系统中碱性磷酸酶的高灵敏度均相检测。

Three-Dimensional SERS-Active Hydrogel Microbeads Enable Highly Sensitive Homogeneous Phase Detection of Alkaline Phosphatase in Biosystems.

作者信息

Cong Lili, Wang Xin, Wang Jiaqi, Liu Weiyi, Xu Weiqing, Zhang Songling, Xu Shuping

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P. R. China.

Department of Obstetrics and Gynecology, The First Hospital of Jilin University, Changchun 130021, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2025 Jan 29;17(4):5933-5941. doi: 10.1021/acsami.4c18139. Epub 2025 Jan 17.

DOI:10.1021/acsami.4c18139
PMID:39824751
Abstract

Alkaline phosphatase (ALP) is a biomarker for many diseases, and monitoring its activity level is important for disease diagnosis and treatment. In this study, we used the microdroplet technology combined with an laser-induced polymerization method to prepare the Ag nanoparticle (AgNP) doped hydrogel microbeads (HMBs) with adjustable pore sizes that allow small molecules to enter while blocking large molecules. The AgNPs embedded in the hydrogel microspheres can provide SERS activity, improving the SERS signal of small molecules that diffuse to the AgNPs. A specific hydrolysis reaction of ALP on 5-bromo-4-chloro-3-indolylphosphate (BCIP) was introduced and itsproduct 5,5'-dibromo-4,4'-dichloro-1,1-[2,2']bisindolyl-3,3'-dione (BCI) was employed to assess ALP activity due to its highly resonance Raman activity. The sensing platform was applied to model ALP activity in serum and evaluate ALP inhibitors. The SERS assay showed higher sensitivity than UV-vis absorption spectroscopy, with the lowest detectable ALP concentration of 1.0 × 10 M. In addition, the ALP activity in HepG2 cells was evaluated using this sensing platform, showing lower ALP-expressing activity than that of controls in response to hypoxia and iron metastasis. This SERS-activated HMB shows great potential in detecting ALP and is expected to help analyze complex clinical samples.

摘要

碱性磷酸酶(ALP)是多种疾病的生物标志物,监测其活性水平对疾病的诊断和治疗至关重要。在本研究中,我们采用微滴技术结合激光诱导聚合方法制备了孔径可调的银纳米颗粒(AgNP)掺杂水凝胶微珠(HMBs),该微珠允许小分子进入而阻挡大分子。嵌入水凝胶微球中的AgNP可提供表面增强拉曼散射(SERS)活性,增强扩散到AgNP的小分子的SERS信号。引入了ALP对5-溴-4-氯-3-吲哚基磷酸酯(BCIP)的特定水解反应,并利用其产物5,5'-二溴-4,4'-二氯-1,1-[2,2']双吲哚基-3,3'-二酮(BCI)因其高共振拉曼活性来评估ALP活性。该传感平台用于模拟血清中的ALP活性并评估ALP抑制剂。SERS检测显示出比紫外可见吸收光谱更高的灵敏度,最低可检测的ALP浓度为1.0×10 M。此外,使用该传感平台评估了HepG2细胞中的ALP活性,结果表明在缺氧和铁转移的情况下,其表达的ALP活性低于对照组。这种SERS激活的HMB在检测ALP方面显示出巨大潜力,有望有助于分析复杂的临床样本。

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引用本文的文献

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Advances in Hydrogel-Integrated SERS Platforms: Innovations, Applications, Challenges, and Future Prospects in Food Safety Detection.水凝胶集成表面增强拉曼散射平台的进展:食品安全检测中的创新、应用、挑战及未来前景
Biosensors (Basel). 2025 Jun 5;15(6):363. doi: 10.3390/bios15060363.