Ji Xudong, Zhou Pengcheng, Zhong Ling, Xu Aimin, Tsang Anderson C O, Chan Paddy K L
Department of Mechanical Engineering The University of Hong Kong Hong Kong.
State Key Laboratory of Pharmaceutical Biotechnology The University of Hong Kong Hong Kong.
Adv Sci (Weinh). 2018 May 2;5(6):1701053. doi: 10.1002/advs.201701053. eCollection 2018 Jun.
Organic field-effect transistors (OFETs)-based sensors have a great potential to be integrated with the next generation smart surgical tools for monitoring different real-time signals during surgery. However, allowing ultraflexible OFETs to have compatibility with standard medical sterilization procedures remains challenging. A novel capsule-like OFET structure is demonstrated by utilizing the fluoropolymer CYTOP to serve both encapsulation and peeling-off enhancement purposes. By adapting a thermally stable organic semiconductor, 2,10-diphenylbis[1]benzothieno[2,3-d;2',3'-d']naphtho[2,3-b;6,7-b']dithiophene (DPh-BBTNDT), these devices show excellent stability in their electrical performance after sterilizing under boiling water and 100 °C-saturated steam for 30 min. The ultrathin thickness (630 nm) enables the device to have superb mechanical flexibility with smallest bending radius down to 1.5 µm, which is essential for application on the highly tortuous medical catheter inside the human body. By immobilizing anti-human C-reactive protein (CRP) (an inflammation biomarker) monoclonal antibody on an extended gate of the OFET, a sensitivity for detecting CRP antigen down to 1 µg mL can be achieved. An ecofriendly water floatation method realized by employing the wettability difference between CYTOP and polyacrylonitrile (PAN) can be used to transfer the device on a ventricular catheter, which successfully distinguishes an inflammatory patient from a healthy one.
基于有机场效应晶体管(OFET)的传感器极有潜力与下一代智能手术工具集成,用于在手术过程中监测不同的实时信号。然而,使超柔性OFET与标准医疗消毒程序兼容仍具有挑战性。通过利用含氟聚合物CYTOP展示了一种新型胶囊状OFET结构,其兼具封装和增强剥离的作用。通过采用热稳定的有机半导体2,10-二苯基双[1]苯并噻吩并[2,3-d;2',3'-d']萘并[2,3-b;6,7-b']二噻吩(DPh-BBTNDT),这些器件在沸水和100℃饱和蒸汽中消毒30分钟后,其电性能表现出优异的稳定性。超薄的厚度(630纳米)使该器件具有卓越的机械柔韧性,最小弯曲半径可达1.5微米,这对于应用于人体内部高度曲折的医用导管至关重要。通过将抗人C反应蛋白(CRP)(一种炎症生物标志物)单克隆抗体固定在OFET的扩展栅极上,可实现检测CRP抗原的灵敏度低至1微克/毫升。利用CYTOP和聚丙烯腈(PAN)之间的润湿性差异实现的一种环保水漂浮方法,可用于将该器件转移到心室导管上,从而成功区分炎症患者和健康人。