The rapid spread of antibiotic resistance - currently one of the greatest threats to human health according to WHO - is to a large extent enabled by plasmid-mediated horizontal transfer of resistance genes. Rapid identification and characterization of plasmids is thus important both for individual clinical outcomes and for epidemiological monitoring of antibiotic resistance. Toward this aim, we have developed an optical DNA mapping procedure where individual intact plasmids are elongated within nanofluidic channels and visualized through fluorescence microscopy, yielding barcodes that reflect the underlying sequence. The assay rapidly identifies plasmids through statistical comparisons with barcodes based on publicly available sequence repo...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance-currently one of the greatest threats to human health acco...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
We present an assay, based on optical DNA mapping in nanochannels that is capable of characterizing ...
Bacteria that have acquired resistance to antibiotics represent one of the largest threats to human ...
Multi-drug resistant bacteria are a major health threat worldwide. Resistance is frequently horizont...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance-currently one of the greatest threats to human health acco...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
The rapid spread of antibiotic resistance - currently one of the greatest threats to human health ac...
We present an assay, based on optical DNA mapping in nanochannels that is capable of characterizing ...
Bacteria that have acquired resistance to antibiotics represent one of the largest threats to human ...
Multi-drug resistant bacteria are a major health threat worldwide. Resistance is frequently horizont...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...
Bacterial plasmids are extensively involved in the rapid global spread of antibiotic resistance. We ...