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首页> 外文期刊>Sensing and Bio-Sensing Research >Smartphone enabled medical diagnostics by optically tracking electromagnetically induced harmonic oscillations of magnetic particles suspended in analytes
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Smartphone enabled medical diagnostics by optically tracking electromagnetically induced harmonic oscillations of magnetic particles suspended in analytes

机译:智能手机通过光学跟踪电磁诱导的磁性颗粒悬浮在分析物中的磁性颗粒的谐波振荡来实现医学诊断

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Smartphone based point of care (POCT) medical diagnostic technology could potentially facilitate healthcare to remote locations with limited medical infrastrucure. However, such protocols exhibit background noise due to non-specific interactions as well as requiring long measurement times that limit their applications. We propose a procedure based on magnetic particle (MPs) that combines three dimensional electromagnetically induced oscillation of MPs with high precision optical tracking of the MPs. The measurement consisted of dropping MPs functionalized with streptavidin onto gold thin film actuators fabricated on silicon nitride substrates. Sinusoidal currents were passed through the actuators to move the MPs by horizontal dielectrophoretic forces. Simultaneously, a vertical magnetic field was applied to promote interaction between the MPs with biotin functionalized onto the substrates. The surfaces of MPs were functionalized with competing biotin whose concentration was varied. A high-resolution (4?K) video of the sensing surface was recorded with a smartphone and simultaneous tracking of 8000–10,000 MPs allowed us to identify MPs that interacted specifically with probes on the surface and ceased to show harmonic oscillations. Importantly, the dielectrophoretic forces reduced non-specific interactions and enhanced the probability of specific interactions while vertical magnetic forces accelerated the interaction of MPs with the functionalized surface. Our approach enabled a detection limit of 1?nM for biotin with a dynamic range of four orders of magnitude with a measurement time of approximately 2?min and video analysis time of 7?min. These results show that combining MPs and dynamic particle tracking is a promising method for practical POCT.
机译:基于智能手机的护理点(POCT)医疗诊断技术可能促进医疗基础设施有限的远程位置的医疗保健。然而,这种协议由于非特异性交互而表现出背景噪声以及需要限制其应用的长测量时间。我们提出了一种基于磁性粒子(MPS)的过程,该程序将MPS的三维电磁诱导的MPS与MPS的高精度光学跟踪相结合。测量由用链霉抗生物素蛋白官能化的滴加MPS,在氮化硅基材上制造的金薄膜致动器上。通过致动器通过正弦电流以通过水平介电流力移动MPS。同时,施加垂直磁场以促进MPS与基底上官能化的生物素之间的相互作用。 MPS的表面与竞争生物素官能化,其浓度变化。通过智能手机记录传感表面的高分辨率(4?K)视频,同时跟踪8000-10,000 MPS允许我们识别专门与表面上的探针相互作用的MPS,并停止显示谐波振荡。重要的是,介电泳力降低了非特异性相互作用并增强了特定相互作用的概率,而垂直磁力加速了MP与官能化表面的相互作用。我们的方法使BIOTIN的检测限为1?NM,其动态范围为四个数量级,测量时间约为2?min,视频分析时间为7?min。这些结果表明,结合MPS和动态粒子跟踪是一种实用POCT的有希望的方法。

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