首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >Smartphone-Based Optofluidic Lab-on-a-Chip for Detecting Pathogens from Blood
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Smartphone-Based Optofluidic Lab-on-a-Chip for Detecting Pathogens from Blood

机译:基于智能手机的光流体芯片实验室可检测血液中的病原体

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摘要

A novel smartphone-based detection device was created to detect infectious pathogens directly from diluted (10%) human whole blood. The model pathogen was histidine-rich protein 2 (HRP-2), an antigen specific to Plasmodium falciparum (malaria). Anti-HRP-2-conjugated submicrobeads were mixed with HRP-2-infused 10% blood in a lab-on-a-chip device. The white LED flash and the digital camera of the smartphone were used as light source and detector, which delivered light to and from the bead and blood mixture via optofluidic channels in the lab-on-a-chip. The optofluidic channels were angled at 45 degrees to capture the Mie scatter from the sample. Considering the absorption and scattering characteristics of blood (red/infrared preferred) and the Mie scatter simulations for microbead immunoagglutination (UV preferred), blue detection showed the best results. The detection limit was 1 pg/mL in 10% blood. The linear range was from 1 pg/mL to 10 ng/mL. A handheld device, easily attachable to a single smartphone, was finally designed and fabricated using optical mirrors and lenses and successfully detected the HRP-2 from 10% blood. The total assay time was approximately 10 min. The proposed device can potentially be used for detecting a wide range of blood infection with high sensitivity.
机译:创建了一种基于智能手机的新型检测设备,可以直接从稀释的(10%)人全血中检测出传染性病原体。模型病原体是富含组氨酸的蛋白质2(HRP-2),这是恶性疟原虫(疟疾)特有的抗原。将抗HRP-2偶联的亚微珠与HRP-2注入的10%血液在芯片实验室设备中混合。白光LED闪光灯和智能手机的数码相机被用作光源和检测器,它们通过芯片实验室中的光流通道向珠子和血液混合物中传递光。光流体通道成45度角以捕获样品中的Mie散射。考虑到血液的吸收和散射特性(优选红色/红外)和微珠免疫凝集的Mie散射模拟(优选UV),蓝色检测显示了最佳结果。 10%血液中的检出限为1 pg / mL。线性范围为1 pg / mL至10 ng / mL。最终,使用光学镜和透镜设计并制造了一种可轻松连接至单个智能手机的手持设备,并成功地从10%的血液中检测出HRP-2。总测定时间约为10分钟。所提出的装置可以潜在地用于以高灵敏度检测广泛范围的血液感染。

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