Berenguel-Alonso Miguel, Granados Xavier, Faraudo Jordi, Alonso-Chamarro Julián, Puyol Mar
Group of Sensors and Biosensors (GSB), Department of Chemistry, Universitat Autònoma de Barcelona, 08193, Bellaterra, Spain.
Anal Bioanal Chem. 2014 Oct;406(26):6607-16. doi: 10.1007/s00216-014-8100-5. Epub 2014 Sep 5.
While magnetic bead (MB)-based bioassays have been implemented in integrated devices, their handling on-chip is normally either not optimal--i.e. only trapping is achieved, with aggregation of the beads--or requires complex actuator systems. Herein, we describe a simple and low-cost magnetic actuator to trap and move MBs within a microfluidic chamber in order to enhance the mixing of a MB-based reaction. The magnetic actuator consists of a CD-shaped plastic unit with an arrangement of embedded magnets which, when rotating, generate the mixing. The magnetic actuator has been used to enhance the amplification reaction of an enzyme-linked fluorescence immunoassay to detect Escherichia coli O157:H7 whole cells, an enterohemorrhagic strain, which have caused several outbreaks in food and water samples. A 2.7-fold sensitivity enhancement was attained with a detection limit of 603 colony-forming units (CFU) /mL, when employing the magnetic actuator.
虽然基于磁珠(MB)的生物测定法已应用于集成设备中,但其在芯片上的操作通常不是最优的——即仅实现了捕获,磁珠发生聚集——或者需要复杂的驱动系统。在此,我们描述了一种简单且低成本的磁驱动器,用于在微流控腔室内捕获和移动磁珠,以增强基于磁珠的反应的混合效果。该磁驱动器由一个光盘形状的塑料单元组成,内部嵌入了磁体阵列,旋转时会产生混合效果。该磁驱动器已用于增强酶联荧光免疫测定法的扩增反应,以检测肠出血性菌株大肠杆菌O157:H7的全细胞,该菌株已在食品和水样中引发了多次疫情。使用磁驱动器时,灵敏度提高了2.7倍,检测限为603个菌落形成单位(CFU)/mL。