滚动圆复制
检出限
色谱法
化学
荧光团
核酸酶
纳斯巴
人类免疫缺陷病毒(HIV)
微流控
生物
DNA
计算生物学
纳米技术
荧光
病毒学
材料科学
物理
遗传学
光学
DNA复制
核酸序列
作者
Ruben R. G. Soares,João Varela,Ujjwal Neogi,Sibel Ciftci,Manickam Ashokkumar,Inês F. Pinto,Mats Nilsson,Narayanan Madaboosi,Aman Russom
标识
DOI:10.1016/j.bios.2020.112442
摘要
Abstract Despite significant progress in diagnostics and disease management during the past decades, human immunodeficiency virus (HIV) infections are still responsible for nearly 1 million deaths every year, mostly in resource-limited settings. Thus, novel, accurate and cost-effective tools for viral load monitoring become crucial to allow specific diagnostics and the effective monitoring of the associated antiviral therapies. Herein, we report an effective combination of a (1) padlock probe (PLP)-mediated rolling circle amplification (RCA) bioassay and an (2) agarose bead-based microfluidic device for the affinity chromatography-based capture and detection of RCA products (RCPs) pre-labelled simultaneously with biotin and an organic fluorophore. This method allowed the efficient capture of ~1 μm-sized RCPs followed by their quantification either as discrete signals or an average fluorescence signal, thus being compatible with both high-resolution imaging for maximum sensitivity as well as simpler optical detection setups. A limit of detection The reported method provides simplicity of operation, unique versatility of signal transduction (i.e. average or discrete signals), and potential coupling with previously reported miniaturized photodetectors. These combined features hold promise for bringing RCA-based molecular diagnostics closer to the point-of-care.
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