Quantitative bioanalytical measurements are commonly performed in a kinetic format and are known to not be robust to perturbation that affects the kinetics itself or the measurement of kinetics. We hypothesized that the same measurements performed in a “digital” (single-molecule) format would show increased robustness to such perturbations. Here, we investigated the robustness of an amplification reaction (reverse-transcription loop-mediated amplification, RT-LAMP) in the context of fluctuations in temperature and time when this reaction is used for quantitative measurements of HIV-1 RNA molecules under limited-resource settings (LRS). The digital format that counts molecules using dRT-LAMP chemistry detected a 2-fold change in concentratio...
Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse transcrip...
A major challenge in global health care is a lack of portable and affordable quantitative diagnostic...
Digital single-molecule technologies are expanding diagnostic capabilities, enabling the ultrasensit...
Quantitative bioanalytical measurements are commonly performed in a kinetic format and are known to ...
This paper shows, using purified HIV RNA, that nucleic acid quantification in a digital format with ...
In this paper, we asked if it is possible to identify the best primers and reaction conditions based...
In this paper, digital quantitative detection of nucleic acids was achieved at the single-molecule l...
Digital single-molecule technologies are expanding diagnostic capabilities, enabling the ultrasensit...
Real-time, isothermal, digital nucleic acid amplification is emerging as an attractive approach for ...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
Isothermal amplification assays, such as loop-mediated isothermal amplification (LAMP), show great u...
Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse transcrip...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
ABSTRACT: Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse...
We describe a high-throughput, automated single-molecule measurement system, equipped with microfl...
Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse transcrip...
A major challenge in global health care is a lack of portable and affordable quantitative diagnostic...
Digital single-molecule technologies are expanding diagnostic capabilities, enabling the ultrasensit...
Quantitative bioanalytical measurements are commonly performed in a kinetic format and are known to ...
This paper shows, using purified HIV RNA, that nucleic acid quantification in a digital format with ...
In this paper, we asked if it is possible to identify the best primers and reaction conditions based...
In this paper, digital quantitative detection of nucleic acids was achieved at the single-molecule l...
Digital single-molecule technologies are expanding diagnostic capabilities, enabling the ultrasensit...
Real-time, isothermal, digital nucleic acid amplification is emerging as an attractive approach for ...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
Isothermal amplification assays, such as loop-mediated isothermal amplification (LAMP), show great u...
Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse transcrip...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
ABSTRACT: Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse...
We describe a high-throughput, automated single-molecule measurement system, equipped with microfl...
Here we used a SlipChip microfluidic device to evaluate the performance of digital reverse transcrip...
A major challenge in global health care is a lack of portable and affordable quantitative diagnostic...
Digital single-molecule technologies are expanding diagnostic capabilities, enabling the ultrasensit...