Myndrul Valerii, Coy Emerson, Babayevska Nataliya, Zahorodna Veronika, Balitskyi Vitalii, Baginskiy Ivan, Gogotsi Oleksiy, Bechelany Mikhael, Giardi Maria Teresa, Iatsunskyi Igor
NanoBioMedical Centre, Adam Mickiewicz University, 3, Wszechnicy Piastowskiej Str., 61-614, Poznan, Poland.
NanoBioMedical Centre, Adam Mickiewicz University, 3, Wszechnicy Piastowskiej Str., 61-614, Poznan, Poland.
Biosens Bioelectron. 2022 Jul 1;207:114141. doi: 10.1016/j.bios.2022.114141. Epub 2022 Mar 6.
Continuous painless glucose monitoring is the greatest desire of more than 422 million diabetics worldwide. Therefore, new non-invasive and convenient approaches to glucose monitoring are more in demand than other tests for microanalytical diagnostic tools. Besides, blood glucose detection can be replaced by continuous glucose monitoring of other human biological fluids (e.g. sweat) collected non-invasively. In this study, a skin-attachable and stretchable electrochemical enzymatic sensor based on ZnO tetrapods (TPs) and a new class of 2D materials - transition metal carbides, known as MXene, was developed and their electroanalytical behavior was tailored for continuous detection glucose in sweat. The high specific area of ZnO TPs and superior electrical conductivity of MXene (TiCTx) nanoflakes enabled to produce enzymatic electrochemical glucose biosensor with enhanced sensitivity in sweat sample (29 μA mM cm), low limit of detection (LOD ≈ 17 μM), broad linear detection range (LDR = 0.05-0.7 mM) that satisfices glucose detection application in human sweat, and advanced mechanical stability (up to 30% stretching) of the template. The developed skin-attachable stretchable electrochemical electrodes allowed to monitor the level of glucose in sweat while sugar uptake and during physical activity. Continuous in vivo monitoring of glucose in sweat obtained during 60 min correlated well with data collected by a conventional amperometric blood glucometer in vitro mode. Our findings demonstrate the high potential of developed ZnO/MXene skin-attachable stretchable sensors for biomedical applications on a daily basis.
连续无痛血糖监测是全球超过4.22亿糖尿病患者的最大愿望。因此,与其他微分析诊断工具测试相比,对新型非侵入性且便捷的血糖监测方法的需求更大。此外,血糖检测可被通过非侵入方式收集的其他人体生物流体(如汗液)的连续血糖监测所取代。在本研究中,基于氧化锌四足体(TPs)和一类新型二维材料——称为MXene的过渡金属碳化物,开发了一种可附着于皮肤且可拉伸的电化学酶传感器,并对其电分析行为进行了调整,以用于连续检测汗液中的葡萄糖。氧化锌四足体的高比表面积和MXene(TiCTx)纳米片的优异导电性使得能够制备出在汗液样本中具有增强灵敏度(29 μA mM cm)、低检测限(LOD≈17 μM)、宽线性检测范围(LDR = 0.05 - 0.7 mM)的酶促电化学葡萄糖生物传感器,该范围满足人体汗液中葡萄糖检测应用,并且模板具有先进的机械稳定性(高达30%的拉伸)。所开发的可附着于皮肤的可拉伸电化学电极能够在糖分摄取和体育活动期间监测汗液中的葡萄糖水平。在60分钟内获得的汗液中葡萄糖的连续体内监测结果与传统安培型血糖仪在体外模式下收集的数据具有良好的相关性。我们的研究结果表明,所开发的氧化锌/MXene可附着于皮肤的可拉伸传感器在日常生物医学应用中具有很高的潜力。