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增材制造的纸-PMMA 混合微流控芯片,用于人工尿液中肌酸酐和 pH 的同时监测。

Additive-manufactured paper-PMMA hybrid microfluidic chip for simultaneous monitoring of creatinine and pH in artificial urine.

机构信息

School of Biotechnology, KIIT (Deemed to be University), Bhubaneswar, Odisha, India.

Nanomaterial research laboratory (NMRL), Nano Division, Yenepoya Research Centre, Yenepoya (Deemed to be University), Deralakatte, Mangalore 575 018, India.

出版信息

Analyst. 2024 Jul 22;149(15):3882-3890. doi: 10.1039/d4an00796d.

Abstract

Nowadays, kidney dysfunction is a common health issue due to the modernized lifestyle. Even though medications are commercially available to treat kidney diseases, early diagnosis is crucial and challenging. Clinically, measuring urine creatinine and pH has gained significant interest as a way to diagnose kidney diseases early. In the present work, we attempted to develop a low-cost, robust, accurate and naked-eye colorimetric method to determine both creatinine levels and pH variations in artificial urine samples using a simple 3D-printed hybrid microfluidic device. Creatinine was detected by the incorporation of the traditional Jaffe test onto the hybrid paper-PMMA microfluidic device and pH (4-8) was measured by a simple anthocyanin test. Notably, the tests were established without employing any sophisticated or costly instrument clusters. The developed 3D-printed microfluidic probe showed a limit of detection (LOD) of 0.04 mM for creatinine over a concentration range of 1-10 mM, with a regression coefficient () of 0.995 in laboratory conditions. Interestingly, the experimental data obtained with artificial urine exhibited a wide linear range from 0.1 mM to 5 mM under different pH values ranging from 4 to 8 in the presence of matrices commonly found in urine samples other than proteins, indicating the potential use of this method in pre-clinical analysis. Since the wide linear range of urine creatinine in artificial urine samples falls well below the clinically relevant concentrations in humans (0.07-0.27 mM), the developed lab-on-chip device is further suitable for clinical evaluation with proper ethical clearance. This 3D-printed hybrid microfluidic colorimetry-based creatinine detection and pH indicator platform can be beneficial in the healthcare sector due to the on-site testing capability, cost-effectiveness, ease of use, robustness, and instrument-free approach.

摘要

如今,由于现代生活方式,肾功能障碍是一个常见的健康问题。尽管有商业上可用于治疗肾脏疾病的药物,但早期诊断至关重要且具有挑战性。临床上,测量尿液肌酐和 pH 值已成为早期诊断肾脏疾病的一种有意义的方法。在本工作中,我们试图开发一种低成本、稳健、准确且用于通过简单的 3D 打印混合微流控装置现场测定人工尿液样本中的肌酐水平和 pH 值变化的裸眼比色法。肌酐的检测是通过将传统的 Jaffe 试验结合到混合纸-PMMA 微流控装置上进行的,而 pH 值(4-8)则通过简单的花青素试验进行测量。值得注意的是,该测试无需使用任何复杂或昂贵的仪器集群。在实验室条件下,开发的 3D 打印微流控探头对肌酐的检测限(LOD)为 0.04 mM,检测范围为 1-10 mM,相关系数()为 0.995。有趣的是,在存在除蛋白质以外的尿液样本中常见基质的情况下,在不同 pH 值(4-8)下,人工尿液中获得的实验数据显示出从 0.1 mM 到 5 mM 的宽线性范围,表明该方法在临床前分析中的潜在用途。由于人工尿液中肌酐的宽线性范围远低于人类的临床相关浓度(0.07-0.27 mM),因此开发的芯片实验室设备在经过适当的伦理审查后,可进一步用于临床评估。由于具有现场测试能力、成本效益、易于使用、稳健性和无仪器方法,这种基于 3D 打印混合微流控比色法的肌酐检测和 pH 值指示剂平台在医疗保健领域具有重要意义。

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