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基于高折射率抗体包被微球的 HIV-1 病毒载量即时检测方法的建立。

Development of a Point-of-Care Assay for HIV-1 Viral Load Using Higher Refractive Index Antibody-Coated Microbeads.

机构信息

Asghar-Lab, Micro and Nanotechnology in Medicine, College of Engineering and Computer Science, Boca Raton, FL 33431, USA.

Department of Computer & Electrical Engineering and Computer Science, Florida Atlantic University, Boca Raton, FL 33431, USA.

出版信息

Sensors (Basel). 2021 Mar 5;21(5):1819. doi: 10.3390/s21051819.

Abstract

The detection of viruses using imaging techniques is challenging because of the weak scattering of light generated by the targets of sizes in the nanometer range. The system we have developed overcomes the light scattering problems by utilizing antibody-coated microbeads of higher index of refraction that can specifically bind with viruses and increase the acceptance angle. Using the new technology, we have developed a portable, cost-effective, and field-deployable platform for the rapid quantification of HIV-1 viral load for point-of-care (POC) settings. The system combines microfluidics with a wide field of view lensless imaging technology. Highly specific antibodies are functionalized to a glass slide inside a microchip to capture HIV-1 virions. The captured virions are then bound by antibody-conjugated microbeads, which have a higher refraction index. The microbeads-HIV-1 virions complexes generate diffraction patterns that are detected with a custom-built imaging setup and rapidly and accurately quantified by computational analysis. This platform technology enables fast nanoscale virus imaging and quantification from biological samples and thus can play a significant role in the detection and management of viral diseases.

摘要

利用成像技术检测病毒具有挑战性,因为目标的光散射很弱,尺寸在纳米范围内。我们开发的系统通过利用具有更高折射率的涂有抗体的微珠克服了光散射问题,这些微珠可以特异性地与病毒结合并增加接受角。我们利用这项新技术,开发了一种便携式、具有成本效益且可在现场部署的平台,用于快速定量即时护理 (POC) 环境中的 HIV-1 病毒载量。该系统将微流控技术与无透镜宽视场成像技术相结合。高度特异性的抗体被功能化到微芯片内的载玻片上,以捕获 HIV-1 病毒粒子。然后,捕获的病毒粒子被具有更高折射率的抗体偶联微珠结合。微珠-HIV-1 病毒粒子复合物产生的衍射图案通过定制的成像设备进行检测,并通过计算分析快速准确地定量。该平台技术能够从生物样本中快速进行纳米级病毒成像和定量,因此在病毒疾病的检测和管理中可以发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cb8/7961362/12aa508260c0/sensors-21-01819-g001.jpg

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