He Zhenzhu, Elbaz Abdelrahman, Gao Bingbing, Zhang Junning, Su Enben, Gu Zhongze
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, China.
Getein Biotech, Inc. No.9 Bofu Road, Luhe Distric, Nanjing, 211505, Jiangsu, China.
Adv Healthc Mater. 2018 Mar;7(5). doi: 10.1002/adhm.201701306. Epub 2018 Jan 18.
Rapid early disease prevention or precise diagnosis is almost impossible in low-resource settings. Natural ordered structures in nature have great potential for the development of ultrasensitive biosensors. Here, motivated by the unique structures and extraordinary functionalities of ordered structures in nature, a biosensor based on butterfly wings is presented. In this study, a flexible Morpho menelaus (M. menelaus) based wearable sensor is integrated with a microfluidic system and electronic networks to facilitate the diagnosis of neurodegenerative disease (ND). In the microfluidic section, the structural characteristics of the M. menelaus wings up layer are combined with SiO nanoparticles to form a heterostructure. The fluorescent enhancement property of the heterostructure is used to increase the fluorescent intensity for multiplex detection of two proteins: IgG and AD7c-NTP. For the electronic section, conductive ink is blade-coated on the under layer of wings for measuring resistance change rate to obtain the frequency of static tremors of ND patients. The disposable M. menelaus based flexible microfluidic and electronic sensor enables biochemical-physiological hybrid monitoring of ND. The sensor is also amenable to a variety of applications, such as comprehensive personal healthcare and human-machine interaction.
在资源匮乏的环境中,很难实现疾病的早期快速预防或精确诊断。自然界中的天然有序结构在超灵敏生物传感器的开发方面具有巨大潜力。在此,受自然界中有序结构独特的结构和非凡功能的启发,提出了一种基于蝴蝶翅膀的生物传感器。在本研究中,一种基于美凤蝶(M. menelaus)翅膀的柔性可穿戴传感器与微流体系统和电子网络集成在一起,以助力神经退行性疾病(ND)的诊断。在微流体部分,美凤蝶翅膀上层的结构特征与二氧化硅纳米颗粒相结合,形成一种异质结构。利用该异质结构的荧光增强特性来提高荧光强度,以对两种蛋白质:免疫球蛋白G(IgG)和神经丝蛋白(AD7c-NTP)进行多重检测。在电子部分,将导电油墨刮涂在翅膀的下层,用于测量电阻变化率,以获取ND患者静态震颤的频率。这种基于美凤蝶翅膀的一次性柔性微流体和电子传感器能够对ND进行生化-生理混合监测。该传感器还适用于多种应用,如全面的个人医疗保健和人机交互。