Tu Tingting, Liang Bo, Cao Qingpeng, Fang Lu, Zhu Qin, Cai Yu, Ye Xuesong
Biosensor National Special Laboratory, College of Biomedical Engineering and Instrument Science, Zhejiang University Hangzhou 310027 PR China
College of Automation, Hangzhou Dianzi University Hangzhou 310018 PR China.
RSC Adv. 2020 Feb 18;10(12):7241-7250. doi: 10.1039/c9ra09847j. eCollection 2020 Feb 13.
With the growing number of patients suffering from noninfectious chronic diseases, the consumption of point of care testing strips increases exponentially, particularly blood glucose testing strips, causing an increasingly severe conflict between strip recycling and the environment. In this paper, fully transient electrochemical strips are developed as a substitute for non-degradable strips. Proper explorations were made, including finding out suitable degradable substrates for strip-making among different degradable materials and optimization of degradable conducting paste. Taking advantage of dissolvable polymer-based materials and nontoxic carbon materials, the transient strips have validated electrochemical functionality to determine physiological levels of glucose with a sensitivity of 14.33 μA mM cm (correlation coefficient is 0.99498) and reached full-degradation within a week after disposal. The interference experiment (negligible interference current response under 7%) and recovery tests (recovery ratio ranging from 92.46% to 102.47%) have illustrated its practical application in real sample detection. Such degradable-characterized testing strips can be widely used in chronic disease management with daily eco-friendly point of care testing, without potential pollution to the environment.
随着患非传染性慢性病患者数量的增加,即时检测试纸的消耗量呈指数级增长,尤其是血糖检测试纸,这导致试纸回收与环境之间的冲突日益严重。在本文中,开发了完全可降解的电化学试纸以替代不可降解的试纸。进行了适当的探索,包括在不同的可降解材料中找出适合制作试纸的可降解基材以及优化可降解导电糊。利用基于可溶解聚合物的材料和无毒碳材料,这种可降解试纸已验证了其电化学功能,能够以14.33 μA mM cm的灵敏度(相关系数为0.99498)测定葡萄糖的生理水平,并且在丢弃后一周内达到完全降解。干扰实验(在7%以下干扰电流响应可忽略不计)和回收率测试(回收率在92.46%至102.47%之间)表明了其在实际样品检测中的实际应用。这种具有可降解特性的检测试纸可通过日常环保的即时检测广泛应用于慢性病管理,而不会对环境造成潜在污染。