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首页> 外文期刊>ACS applied materials & interfaces >Integrating Target-Responsive Hydrogel with Pressuremeter Readout Enables Simple, Sensitive, User-Friendly, Quantitative Point-of-Care Testing
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Integrating Target-Responsive Hydrogel with Pressuremeter Readout Enables Simple, Sensitive, User-Friendly, Quantitative Point-of-Care Testing

机译:将目标响应水凝胶与压力仪读数集成,可实现简单,灵敏,用户友好,定量的护理点测试

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摘要

Point-of-care testing (POCT) with the advantages of speed, simplicity, and low cost, as well as no need for instrumentation, is critical for the measurement of analytes in a variety of environments lacking access to laboratory infrastructure. In the present study, a hydrogel pressure-based assay for quantitative POCT was developed by integrating a target-responsive hydrogel with pressuremeter readout. The target-responsive hydrogels were constructed with DNA grafted linear polyacrylamide and the cross-linking DNA for selective target recognition. The hydrogel response to the target substance allows release of the preloaded Pt nanoparticles, which have good stability and excellent catalytic ability for decomposing H2O2 to O-2. Then, the generated O-2 in a sealed environment leads to significant pressure increase, which can be easily read out by a handheld pressuremeter. Using this target-responsive hydrogel pressure-based assay, portable and highly sensitive detection of cocaine, ochratoxin A, and lead ion were achieved with excellent accuracy and selectivity. With the advantages of portability, high sensitivity, and simple sample processing, the hydrogel pressure-based assay shows great potential for quantitative POCT of a broad range of targets in resource-limited settings.
机译:具有速度,简单性和低成本的优点的护理点测试(POCT)以及不需要仪器,对于缺乏对实验室基础设施获得的各种环境中的分析物测量至关重要。在本研究中,通过将靶响应水凝胶与加压测定仪读出一体化来开发用于定量POCT的水凝胶压力的测定。用DNA接枝的线性聚丙烯酰胺和交联DNA构建靶响应性水凝胶,用于选择性靶标识别。对目标物质的水凝胶响应允许释放预加载的Pt纳米颗粒,其具有良好的稳定性和优异的催化能力,用于将H 2 O 2分解至O-2。然后,密封环境中产生的O-2导致显着的压力增加,这可以通过手持式压力测量仪容易地读出。使用该靶响应水凝胶的基于压力的测定,可卡因,OCHRATOXIN A和铅离子的便携式和高敏感性检测,具有优异的精度和选择性。随着便携性,高灵敏度和简单的样品处理的优点,水凝胶基的测定显示了资源限制环境中广泛目标的定量POCT的巨大潜力。

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