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用于粘度测量的经济型高效纸质器件的制作。

Fabrication of cost-effective and efficient paper-based device for viscosity measurement.

机构信息

CSIR-Centre for Cellular & Molecular Biology, CCMB-Annexe-II, Medical Biotechnology Complex, Uppal, Hyderabad, 500039, Telangana, India.

CSIR-Centre for Cellular & Molecular Biology, CCMB-Annexe-II, Medical Biotechnology Complex, Uppal, Hyderabad, 500039, Telangana, India.

出版信息

Anal Chim Acta. 2018 Dec 31;1044:86-92. doi: 10.1016/j.aca.2018.05.036. Epub 2018 May 14.

Abstract

Use of paper-based devices for affordable diagnostics is gaining interest due to unique advantages such as affordability, portability, easy disposability and inherent capillarity. As capillary transportation is an integral component of paper-based devices, low sample volume with faster measurement becomes an additional advantage. We have developed a simple, paper-based microfluidic device suitable for measuring the viscosity of Newtonian fluids as well as a few non-Newtonian fluids with sample volume as little as 12-20 μL. The results could be obtained much faster than the conventional methods. A comparative analysis of the results obtained with our paper-based viscometer and with that of the conventional Ostwald viscometer shows a correlation coefficient greater than 0.99. Apart from viscosity measurement, the paper-based devices were tested for protein denaturation and polymer molecular weight determination. Our results show that the paper-based viscometer could be a potential alternative for the conventional viscometers in the viscosity range from 0.9 cP up till ∼40 cP, with added benefits in terms of time, cost and low sample volume requirement.

摘要

由于价格低廉、便携、易于处理和固有的毛细作用等独特优势,基于纸张的廉价诊断设备的应用越来越受到关注。由于毛细传输是基于纸张的设备的一个组成部分,因此具有较小的样本量和更快的测量速度成为额外的优势。我们开发了一种简单的基于纸张的微流控设备,可用于测量牛顿流体以及一些非牛顿流体的粘度,样本量仅为 12-20μL。与传统方法相比,结果可以更快地获得。我们的基于纸张的粘度计和传统的奥斯特瓦尔德粘度计的结果的比较分析表明相关系数大于 0.99。除了粘度测量之外,还对基于纸张的设备进行了蛋白质变性和聚合物分子量测定的测试。我们的结果表明,在 0.9 cP 至约 40 cP 的粘度范围内,基于纸张的粘度计可以替代传统的粘度计,在时间、成本和低样本量需求方面具有额外的优势。

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