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A viscosity and C-reactive protein sensing technique based on Brownian motion measurements by total-internal-reflective-fluorescent velocimetry

机译:基于全内反射荧光测速法基于布朗运动测量的粘度和C反应蛋白传感技术

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In this study, a two-section clinical sample detection on viscosity and bimolecule sensing technique based on measuring the Brownian velocity of nanobeads has been successfully developed. Bare and antibody-coated fluorescent nanobeads were used to detect various viscous solutions and different concentrations of bio-molecular samples, respectively. The Brownian velocities of the nanobeads became slower when the sizes of antibody-coated nanobeads increased during the antibody-antigen interaction process or when the bare nanobeads were seeded in a higher viscosity solution. In order to obtain the characteristics of the Brownian motion of nanobeads in the static liquid, total internal reflection fluorescent velocimetry (TIRFV) was employed. This sensing technique should be useful in clinical diagnosis, bio-molecule judgment, and the study of fluid characteristics.
机译:在这项研究中,已经成功地开发了一种基于粘度和双分子传感技术的两部分临床样品检测技术,该技术基于测量纳米珠的布朗速度。裸露和抗体包被的荧光纳米珠分别用于检测各种粘性溶液和不同浓度的生物分子样品。当在抗体-抗原相互作用过程中抗体包被的纳米珠的尺寸增加,或当裸露的纳米珠粒接种在较高粘度的溶液中时,纳米珠粒的布朗速度变慢。为了获得静态液体中纳米珠的布朗运动特性,采用了全内反射荧光测速仪(TIRFV)。这种感测技术应可用于临床诊断,生物分子判断和流体特性研究。

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