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一种用于无设备、定量多重肝功能监测的能量体现并行液体操控技术。

An energy-embodied paralleled liquid manipulation for equipment-free, quantitative multiplexed liver function monitoring.

作者信息

Liang Chao, Zhao Jingyang, Wei Pingdong, Wei Kang, Jiang Hanqing

机构信息

School of Engineering, Westlake University, Hangzhou, Zhejiang 310030, China.

Westlake Interactive Robot Technology (Hangzhou) Co. Ltd., Hangzhou, Zhejiang 310000, China.

出版信息

Sci Adv. 2025 Aug 8;11(32):eadx0092. doi: 10.1126/sciadv.adx0092.

Abstract

Comprehensive liver function monitoring is vital for liver damage diagnoses. However, multiplexed testing with clinical accuracy often requires paralleled liquid manipulation to avoid reagent interference and nonspecific adsorption, making it restricted to centralized facilities and specialists. Here, we report an equipment-free, quantitative, and multiplexed point-of-care testing (POCT), the energy-embodied POCT (EE-POCT). The driving energy (pressured gas) and liquid reagents are embodied in separate rigid-flexible chambers through a mechanical pressure sensing mechanism to achieve a paralleled, interference-free, and multiple-reagent operation with no need for external equipment. The EE-POCT achieves quantitative results for nine liver-related indicators from 180 microliters of whole blood within 4 minutes. Validated with 103 clinical specimens, it shows high concordance with a clinical gold standard analyzer (Pearson coefficients >0.9). The EE-POCT platform not only advances liver health diagnostics but also sets a precedent for developing versatile, accessible medical technologies that can significantly affect global health outcomes.

摘要

全面的肝功能监测对于肝脏损伤的诊断至关重要。然而,具有临床准确性的多重检测通常需要并行的液体操作,以避免试剂干扰和非特异性吸附,这使得它仅限于集中设施和专业人员使用。在此,我们报告了一种无需设备、定量且多重的即时检测(POCT),即能量体载POCT(EE-POCT)。驱动能量(压缩气体)和液体试剂通过机械压力传感机制体现在单独的刚柔结合腔室中,以实现并行、无干扰和多试剂操作,无需外部设备。EE-POCT可在4分钟内从180微升全血中获得9项肝脏相关指标的定量结果。经103份临床标本验证,它与临床金标准分析仪具有高度一致性(皮尔逊系数>0.9)。EE-POCT平台不仅推动了肝脏健康诊断的发展,还为开发能够显著影响全球健康结果的通用、可及的医疗技术树立了先例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/962a/12333680/4e0dbba4db32/sciadv.adx0092-f1.jpg

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