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Microfluidic Devices with Templated Regular Macroporous Structures for HIV Viral Capture

机译:具有模板化规则大孔结构的HIV病毒捕获的微流控设备。

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摘要

There is a need to develop inexpensive, portable and easy-to-use devices for viral sample processing for resource-limited settings. Here we offer a solution to efficient virus capture by incorporating macroporous materials with regular structures into microfluidic devices for affinity chromatography. Two-dimensional simulations were first conducted to investigate the effects of two structures, a nanopost array and a spherical pore network, on nanoparticle capture. Then, the two structures were created in polymers by templating anodic aluminum oxide films and 3D close-packed silica particles, respectively. When the microdevices containing functionalized porous materials were tested for human immunodeficiency virus (HIV) isolation, capture efficiencies of 80–99% were achieved under a continuous flow. Comparatively, functionalized flatbed microchannels captured around 10% of HIV particles. As the characteristic dimensions of the nanostructures are tunable, such devices can be adapted for the capture of different submicron bioparticles. The high capture efficiency and easy-to-operate nature suit the need of resource-limited settings and may find applications for point-of-care diagnostics.
机译:需要开发廉价的,便携式的和易于使用的设备,用于在资源有限的情况下进行病毒样品处理。在这里,我们通过将具有规则结构的大孔材料掺入用于亲和色谱的微流控设备中,提供了有效捕获病毒的解决方案。首先进行二维模拟,以研究纳米柱阵列和球形孔网络这两种结构对纳米粒子捕获的影响。然后,分别通过模板化阳极氧化铝膜和3D紧密堆积的二氧化硅颗粒,在聚合物中创建两个结构。当对包含功能化多孔材料的微型设备进行人类免疫缺陷病毒(HIV)分离测试时,在连续流动下捕获效率达到80–99%。相比之下,功能化的平板微通道捕获了大约10%的HIV颗粒。由于纳米结构的特征尺寸是可调的,因此此类装置可适用于捕获不同的亚微米生物颗粒。高捕获效率和易于操作的特性满足资源受限设置的需求,并可能找到即时诊断的应用程序。

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