CSIRO Manufacturing, Private Bag 10, Clayton, Melbourne, VIC 3169, Australia.
RMIT University, Melbourne, VIC 3001, Australia.
Lab Chip. 2016 Dec 20;17(1):169-177. doi: 10.1039/c6lc01263a.
Current diagnosis of infectious diseases such as Hendra virus (HeV) relies mostly on laboratory-based tests. There is an urgent demand for rapid diagnosis technology to detect and identify these diseases in humans and animals so that disease spread can be controlled. In this study, an integrated lab-on-a-chip device using a magnetic nanoparticle immunoassay is developed. The key features of the device are the chaotic fluid mixing, achieved by magnetically driven motion of nanoparticles with the optimal mixing protocol developed using chaotic transport theory, and the automatic liquid handling system for loading reagents and samples. The device has been demonstrated to detect Hendra virus antibodies in dilute horse serum samples within a short time of 15 minutes and the limit of detection is about 0.48 ng ml. The device platform can potentially be used for field detection of viruses and other biological and chemical substances.
目前,亨德拉病毒(HeV)等传染病的诊断主要依赖于实验室检测。因此,人们迫切需要快速诊断技术来检测和识别人类和动物中的这些疾病,以控制疾病的传播。在本研究中,开发了一种基于磁纳米粒子免疫测定的集成微流控芯片装置。该装置的关键特征是通过磁性驱动纳米粒子的运动实现混沌流体混合,并且使用混沌输运理论开发了最佳的混合方案。此外,该装置还具有自动加载试剂和样本的液体处理系统。该装置在 15 分钟的短时间内即可检测出稀释马血清样本中的亨德拉病毒抗体,检测限约为 0.48ng/ml。该装置平台有望用于现场检测病毒和其他生物及化学物质。