Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY, USA.
Institute for Computational Biomedicine and Department of Physiology and Biophysics, Weill Cornell Medical College, New York, NY, USA; The WorldQuant Initiative for Quantitative Prediction, New York, NY, USA.
Biosens Bioelectron. 2022 Nov 15;216:114654. doi: 10.1016/j.bios.2022.114654. Epub 2022 Aug 24.
There are a variety of infectious diseases with a high incidence and mortality in limited resource settings that could benefit from rapid point of care molecular diagnosis. Global health efforts have sought to implement mass-screening programs to provide earlier detection and subsequent treatment in an effort to control transmission and improve health outcomes. However, many of the current diagnostic technologies under development are limited to fewer than 10 samples per run, which inherently restricts the screening throughput of these devices. We have developed a high throughput device called "MINI" that is capable of testing hundreds of samples per day at the point-of-care. MINI can utilize multiple energy sources - electricity, flame, or solar - to perform loop-mediated isothermal amplification (LAMP) in a portable and robust device which is ideal for use in limited resource settings. The unique opto-electronic design of MINI minimizes the energy and space requirements of the device and maximizes the optical isolation and signal clarity, enabling point-of-care analysis of 96 unique samples at once. We show comparable performance to a commercial instrument using two different LAMP assays for Kaposi's sarcoma-associated herpesvirus and a common housekeeping gene, GAPDH. With a single device capable of running hundreds of samples per day, increased access to modern molecular diagnostics could improve health outcomes for a variety of diseases common in limited resource settings.
在资源有限的环境中,有许多具有高发病率和死亡率的传染病,可以从快速即时分子诊断中受益。全球卫生工作一直致力于实施大规模筛查计划,以便尽早发现并随后进行治疗,从而控制传播并改善健康结果。然而,许多正在开发中的当前诊断技术每次运行的检测样本数都少于 10 个,这固有地限制了这些设备的筛查通量。我们开发了一种名为“MINI”的高通量设备,该设备能够在现场每天测试数百个样本。MINI 可以利用多种能源——电力、火焰或太阳能——在便携式和坚固的设备中进行环介导等温扩增(LAMP),非常适合在资源有限的环境中使用。MINI 的独特光电设计最大限度地减少了设备的能源和空间要求,并最大限度地提高了光学隔离和信号清晰度,使设备能够一次分析 96 个独特的样本。我们使用两种不同的 LAMP 检测试剂盒对卡波济肉瘤相关疱疹病毒和常见管家基因 GAPDH 进行了比较,结果表明 MINI 的性能与商用仪器相当。每天只需一个设备就可以运行数百个样本,这将增加对现代分子诊断的获取,从而改善资源有限环境中常见的各种疾病的健康结果。