生物传感器
透皮
再现性
材料科学
生物医学工程
毛细管作用
间质液
微流控
硅片
纳米技术
硅
色谱法
光电子学
化学
复合材料
医学
药理学
内科学
作者
Lucanos Marsilio Strambini,Angela Longo,Simona Scarano,Tommaso Prescimone,Ilaria Palchetti,Maria Minunni,D. Giannessi,Giuseppe Barillaro
标识
DOI:10.1016/j.bios.2014.11.010
摘要
In this work a novel self-powered microneedle-based transdermal biosensor for pain-free high-accuracy real-time measurement of glycaemia in interstitial fluid (ISF) is reported. The proposed transdermal biosensor makes use of an array of silicon-dioxide hollow microneedles that are about one order of magnitude both smaller (borehole down to 4 µm) and more densely-packed (up to 1×106 needles/cm2) than state-of-the-art microneedles used for biosensing so far. This allows self-powered (i.e. pump-free) uptake of ISF to be carried out with high efficacy and reliability in a few seconds (uptake rate up to 1 µl/s) by exploiting capillarity in the microneedles. By coupling the microneedles operating under capillary-action with an enzymatic glucose biosensor integrated on the back-side of the needle-chip, glucose measurements are performed with high accuracy (±20% of the actual glucose level for 96% of measures) and reproducibility (coefficient of variation 8.56%) in real-time (30 s) over the range 0–630 mg/dl, thus significantly improving microneedle-based biosensor performance with respect to the state-of-the-art.
科研通智能强力驱动
Strongly Powered by AbleSci AI