In this work, we introduce an asymmetric membrane as a simple and robust nanofluidic platform for digital detection of single pathogenic bacteria directly in 10 mL of unprocessed environmental water samples. The asymmetric membrane, consisting of uniform micropores on one side and a high density of vertically aligned nanochannels on the other side, was prepared within 1 min by a facile method. The single membrane covers all the processing steps from sample concentration, purification, and partition to final digital loop-mediated isothermal amplification (LAMP). By simple filtration, bacteria were enriched and partitioned inside the micropores, while inhibitors typically found in the environmental samples (i.e., proteins, heavy metals, and o...
The world is currently facing a serious health burden of waterborne diseases, including diarrhea, ga...
Micro/Nanofluidics has gain much attention recently, due to their potential on single cell detection...
A bioluminescent assay for ATP in water borne bacteria is made by adding nitric acid to a water samp...
In this work, we introduce an asymmetric membrane as a simple and robust nanofluidic platform for di...
In this work, we introduce an asymmetric membrane as a simple and robust nanofluidic platform for di...
In this work, we report digital loop-mediated isothermal amplification (LAMP) or reverse-transcripti...
This article describes plug-based microfluidic technology that enables rapid detection and drug susc...
Environmental pollutants pose great risks and adverse effects to humans and therefore arouse global ...
Model coliphages (e.g., ΦX174, MS2, and PRD1) have been widely used as surrogates to study the fate ...
Drinking water standards in the United States mandate a zero tolerance of generic E. coli in 100mL o...
Escherichia colibacteria were determined by in flow cytometry with laser excitation and fluorescence...
Waterborne pathogens are a global health concern, with 1 billion people having no access to uncontam...
Rapid and sensitive Escherichia coli (E. coli) detection is important in determining environmental c...
The quality and safety of drinking water is of major importance for human life. Current analytical m...
Human enteric viruses can be highly infectious and thus capable of causing disease upon ingestion of...
The world is currently facing a serious health burden of waterborne diseases, including diarrhea, ga...
Micro/Nanofluidics has gain much attention recently, due to their potential on single cell detection...
A bioluminescent assay for ATP in water borne bacteria is made by adding nitric acid to a water samp...
In this work, we introduce an asymmetric membrane as a simple and robust nanofluidic platform for di...
In this work, we introduce an asymmetric membrane as a simple and robust nanofluidic platform for di...
In this work, we report digital loop-mediated isothermal amplification (LAMP) or reverse-transcripti...
This article describes plug-based microfluidic technology that enables rapid detection and drug susc...
Environmental pollutants pose great risks and adverse effects to humans and therefore arouse global ...
Model coliphages (e.g., ΦX174, MS2, and PRD1) have been widely used as surrogates to study the fate ...
Drinking water standards in the United States mandate a zero tolerance of generic E. coli in 100mL o...
Escherichia colibacteria were determined by in flow cytometry with laser excitation and fluorescence...
Waterborne pathogens are a global health concern, with 1 billion people having no access to uncontam...
Rapid and sensitive Escherichia coli (E. coli) detection is important in determining environmental c...
The quality and safety of drinking water is of major importance for human life. Current analytical m...
Human enteric viruses can be highly infectious and thus capable of causing disease upon ingestion of...
The world is currently facing a serious health burden of waterborne diseases, including diarrhea, ga...
Micro/Nanofluidics has gain much attention recently, due to their potential on single cell detection...
A bioluminescent assay for ATP in water borne bacteria is made by adding nitric acid to a water samp...