Waterborne microbial pathogen detection via nucleic acid analysis on portable microfluidic devices is a growing area of research, development, and application. Traditional polymerase chain reaction (PCR)-based nucleic acid analysis detects total extracted DNA, but cannot differentiate live and dead cells. A propidium monoazide (PMA) pretreatment step before PCR can effectively exclude DNA from nonviable cells, as PMA can selectively diffuse through compromised cell membranes and intercalate with DNA to form DNA-PMA complex upon light exposure. The complex strongly inhibits the amplification of the bound DNA in PCR, and thus, only cells with intact cell membranes are detected. Herein, this study reports the development of a microfluidic devi...
Infectious diseases remain a public health concern worldwide. They severely impact resource-poor are...
Accurate and timely detection of infectious pathogens is urgently needed for disease treatment and c...
The application of microfluidic devices for DNA amplification has recently been extensively studied....
Waterborne microbial pathogen detection via nucleic acid analysis on portable microfluidic devices i...
The polymerase chain reaction (PCR) is a robust technique used to make multiple copies of a segment ...
The use of DNA-based molecular detection tools for bacterial diagnostics is hampered by the inabilit...
Propidium monoazide (PMA) was used to differentiate live from membrane-compromised bacteria in PCR m...
Propidium monoazide (PMA) is a molecular tool used to assess viability of microorganisms. Currently,...
ABSTRACT: Preparation of raw, untreated biological samples remains a major challenge in microfluidic...
Molecular diagnostics that involve nucleic acid amplification tests (NAATs) are crucial for preventi...
[[abstract]]Mycobacterium tuberculosis (TB) infection poses a huge challenge worldwide. It is challe...
Molecular diagnostics for sepsis is still a challenge due to the presence of compounds that interfer...
Recently, pathogenic microorganisms have aroused wide public concern for their potential to cause se...
Conventional DNA profiling work involved using a large amount of white blood cells obtained from the...
The miniaturization of biological and chemical analytical devices by micro-electro-mechanical-system...
Infectious diseases remain a public health concern worldwide. They severely impact resource-poor are...
Accurate and timely detection of infectious pathogens is urgently needed for disease treatment and c...
The application of microfluidic devices for DNA amplification has recently been extensively studied....
Waterborne microbial pathogen detection via nucleic acid analysis on portable microfluidic devices i...
The polymerase chain reaction (PCR) is a robust technique used to make multiple copies of a segment ...
The use of DNA-based molecular detection tools for bacterial diagnostics is hampered by the inabilit...
Propidium monoazide (PMA) was used to differentiate live from membrane-compromised bacteria in PCR m...
Propidium monoazide (PMA) is a molecular tool used to assess viability of microorganisms. Currently,...
ABSTRACT: Preparation of raw, untreated biological samples remains a major challenge in microfluidic...
Molecular diagnostics that involve nucleic acid amplification tests (NAATs) are crucial for preventi...
[[abstract]]Mycobacterium tuberculosis (TB) infection poses a huge challenge worldwide. It is challe...
Molecular diagnostics for sepsis is still a challenge due to the presence of compounds that interfer...
Recently, pathogenic microorganisms have aroused wide public concern for their potential to cause se...
Conventional DNA profiling work involved using a large amount of white blood cells obtained from the...
The miniaturization of biological and chemical analytical devices by micro-electro-mechanical-system...
Infectious diseases remain a public health concern worldwide. They severely impact resource-poor are...
Accurate and timely detection of infectious pathogens is urgently needed for disease treatment and c...
The application of microfluidic devices for DNA amplification has recently been extensively studied....