Loop-mediated
isothermal amplification (LAMP) as a diagnostic tool
is rapidly gaining recognition and maturity. Among various advantages
over traditional polymerase chain reaction, the ability to visually
detect amplification by the incorporation of colorimetric indicators
is one of its most unique features. There is an overwhelming variety
of LAMP indicators in the literature, yet a comprehensive comparative
study is lacking. This study evaluates the use of hydroxynaphthol
blue, phenol red, calcein, leuco crystal violet, malachite green,
and a fluorescent dye for visual detection. A method for objective
quantitative analysis using ImageJ is described that is readily implemented
in standard and microfluidic workflows. The work here also includes
the largest inter-reader variability study involving 24 participants
to evaluate these indicators. We found inaccuracies in visual assessment
as bias and/or individual-based perception can exist, solidifying
the need for objective analysis. There was not a “universal”
indicator, although considerations in sample preparation, storage,
and applicability are discussed in length.
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is a zoonotic RNA virus characterized by high transmission rates and pathogenicity worldwide. Continued control of the COVID-19 pandemic requires the diversification of rapid, easy to use, sensitive, and portable methods for SARS-CoV-2 sample preparation and analysis. Here, we propose a method for SARS-CoV-2 viral enrichment and enzymatic extraction of RNA from clinically relevant matrices in under 10 minutes. This technique utilizes affinity-capture hydrogel particles to concentrate SARS-CoV-2 from solution, and leverages existing PDQeX technology for RNA isolation. Characterization of our method is accomplished with reverse transcription real-time polymerase chain reaction (RT-PCR) for relative, comparative RNA detection. In a double-blind study analyzing viral transport media (VTM) obtained from clinical nasopharyngeal swabs, our sample preparation method demonstrated both comparable results to a routinely used commercial extraction kit and 100% concordance with laboratory diagnoses. Compatibility of eluates with alternative forms of analysis was confirmed using microfluidic RT-PCR (μRT-PCR), recombinase polymerase amplification (RPA), and loop-mediated isothermal amplification (LAMP). The alternative methods explored here conveyed successful amplification from all RNA eluates originating from positive clinical samples. Finally, this method demonstrated high performance within a saliva matrix across a broad range of viral titers and dilutions up to 90% saliva matrix, and sets the stage for miniaturization to the microscale.
Many assays necessitate the use of highly concentrated acids, powerful oxidizing agents, or a combination of the two. Although microfluidic devices offer vast potential for rapid analytical interrogation at the...
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