Department of Electrical and Computer Engineering, Micro and Nanotechnology Laboratory, University of Illinois at Urbana-Champaign, 208 North Wright Street, Urbana, IL 61801, USA.
Nanoscale. 2014 May 21;6(10):5162-71. doi: 10.1039/c4nr00027g.
We demonstrate an approach for detection, identification, and kinetic monitoring of drugs flowing within tubing, through the use of a plasmonic nanodome array (PNA) surface. The PNA structures are fabricated using a low-cost nanoreplica molding process upon a flexible plastic substrate that is subsequently integrated with a flow cell that connects in series with ordinary intravenous (IV) drug delivery tubing. To investigate the potential clinical applications for point-of-care detection and real-time monitoring, we perform SERS detection of ten pharmaceutical compounds (hydrocodone, levorphanol, morphine, oxycodone, methadone, phenobarbital, dopamine, diltiazem, promethazine, and mitoxantrone). We demonstrate dose-dependent SERS signal magnitude, resulting in detection limits (ng ml(-1)) well below typical administered dosages (mg ml(-1)). Further, we show that the detected drugs are not permanently attached to the PNA surface, and thus our approach is capable of performing continuous monitoring of drug delivery as materials flow through IV tubing that is connected in series with the sensor. Finally, we demonstrate the potential co-detection of multiple drugs when they are mixed together, and show excellent reproducibility and stability of SERS measurements for periods extending at least five days. The capabilities reported here demonstrate the potential to use PNA SERS surfaces for enhancing the safety of IV drug delivery.
我们展示了一种通过使用等离子体纳米穹顶阵列(PNA)表面来检测、识别和监测管内流动药物的方法。PNA 结构使用低成本的纳米复制成型工艺在柔性塑料衬底上制造,然后与与普通静脉(IV)药物输送管串联连接的流动池集成。为了研究即时护理检测和实时监测的潜在临床应用,我们对十种药物化合物(氢可酮、左啡烷、吗啡、羟考酮、美沙酮、苯巴比妥、多巴胺、地尔硫卓、异丙嗪和米托蒽醌)进行了 SERS 检测。我们证明了 SERS 信号幅度与剂量呈依赖性,从而检测限(ng ml(-1)) 远低于典型的给药剂量(mg ml(-1))。此外,我们表明,检测到的药物不会永久附着在 PNA 表面上,因此我们的方法能够在与传感器串联连接的 IV 管中连续监测药物输送。最后,我们展示了当它们混合在一起时同时检测多种药物的潜力,并显示了 SERS 测量至少五天的出色重现性和稳定性。这里报道的功能证明了使用 PNA SERS 表面来增强 IV 药物输送安全性的潜力。