改变肾脏诊断:用于毛细管血液中多重肾脏生物标记物检测的石墨烯增强型片上实验室(传感器研究进展 11/2024)

Joaquin F. Diforti, Thomas Cunningham, Zaira Zegalo, Esteban Piccinini, Waldemar A. Marmisollé, Jose M. Piccinini, Omar Azzaroni
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引用次数: 0

摘要

基于石墨烯的片上实验室一种基于石墨烯的片上实验室(G-LOC)已经开发出来并通过验证,可用于毛细管血液中肾脏生物标记物的多重自测。G-LOC 具有 98.7% 以上的准确率和友好的用户界面,实现了真正的居家数字诊断,具有实验室级的精确度和即时结果。它有望解决医疗保健领域的主要难题,包括大规模筛查和监测慢性肾脏病(CKD)。更多详情,请参阅 Esteban Piccinini、Omar Azzaroni 及合作者撰写的文章 2400061。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Transforming Renal Diagnosis: Graphene-Enhanced Lab-On-a-Chip for Multiplexed Kidney Biomarker Detection in Capillary Blood (Adv. Sensor Res. 11/2024)

Graphene-Based Lab-On-a-Chip

A Graphene-based Lab-On-a-Chip (G-LOC) has been developed and validated for multiplex self-testing renal biomarkers in capillary blood. G-LOC offers over 98.7% accuracy and a user-friendly interface, enabling true at-home and digital diagnostics with lab-grade precision and instant results. It has the potential to tackle major healthcare challenges, including large-scale screening and monitoring of chronic kidney disease (CKD). More details can be found in article 2400061 by Esteban Piccinini, Omar Azzaroni, and co-workers.

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Transforming Renal Diagnosis: Graphene-Enhanced Lab-On-a-Chip for Multiplexed Kidney Biomarker Detection in Capillary Blood (Adv. Sensor Res. 11/2024) Masthead (Adv. Sensor Res. 11/2024) All Solid Photonic Crystal Fiber Enabled by 3D Printing Fiber Technology for Sensing of Multiple Parameters (Adv. Sensor Res. 11/2024) Design Approaches and Electromechanical Modeling of Conformable Piezoelectric-Based Ultrasound Systems (Adv. Sensor Res. 10/2024) Masthead (Adv. Sensor Res. 10/2024)
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