Nanopore sequencing offers a portable and affordable alternative to sequencing-by-synthesis methods but suffers from lower accuracy and cannot sequence ultrashort DNA. This puts applications such as molecular diagnostics based on the analysis of cell-free DNA or single-nucleotide variants (SNVs) out of reach. To overcome these limitations, we report a nanopore-based sequencing strategy in which short target sequences are first circularized and then amplified via rolling-circle amplification to produce long stretches of concatemeric repeats. After sequencing on the Oxford Nanopore Technologies MinION platform, the resulting repeat sequences can be aligned to produce a highly accurate consensus that reduces the high error-rate present in the ...
Single-molecule techniques have been developed for commercial DNA sequencing1,2. One emerging strate...
Identifying DNA species is crucial for diagnostics. For DNA identification, single-molecule DNA sequ...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] Nanopore-based det...
A nanopore-based device provides single-molecule detection and analytical capabilities that are achi...
Third-generation DNA sequencing has enabled sequencing of long, unamplified DNA fragments with minim...
DNA sequencing, i.e., the process of determining the succession of nucleotides on a DNA strand, has ...
Single molecule sequencing technologies, such as nanopore sequencing, provide new ways to investigat...
DNA strands can be analyzed at the single-molecule level by isolating them inside nanoscale holes. T...
The single-molecule accuracy of nanopore sequencing has been an area of rapid academic and commercia...
Nanopore sequencing is a recent technology that allows direct real-time sequencing of DNA/RNA molecu...
Third-generation long-read technologies denote the latest progression in high throughput DNA and RNA...
The field of nanopore research has been driven by the need to inexpensively and rapidly sequence DNA...
There has been significant progress made in the field of nanopore biosensor development and sequenci...
Genome copy number is an important source of genetic variation in health and disease. In cancer, Cop...
Single-molecule techniques have been developed for commercial DNA sequencing1,2. One emerging strate...
Single-molecule techniques have been developed for commercial DNA sequencing1,2. One emerging strate...
Identifying DNA species is crucial for diagnostics. For DNA identification, single-molecule DNA sequ...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] Nanopore-based det...
A nanopore-based device provides single-molecule detection and analytical capabilities that are achi...
Third-generation DNA sequencing has enabled sequencing of long, unamplified DNA fragments with minim...
DNA sequencing, i.e., the process of determining the succession of nucleotides on a DNA strand, has ...
Single molecule sequencing technologies, such as nanopore sequencing, provide new ways to investigat...
DNA strands can be analyzed at the single-molecule level by isolating them inside nanoscale holes. T...
The single-molecule accuracy of nanopore sequencing has been an area of rapid academic and commercia...
Nanopore sequencing is a recent technology that allows direct real-time sequencing of DNA/RNA molecu...
Third-generation long-read technologies denote the latest progression in high throughput DNA and RNA...
The field of nanopore research has been driven by the need to inexpensively and rapidly sequence DNA...
There has been significant progress made in the field of nanopore biosensor development and sequenci...
Genome copy number is an important source of genetic variation in health and disease. In cancer, Cop...
Single-molecule techniques have been developed for commercial DNA sequencing1,2. One emerging strate...
Single-molecule techniques have been developed for commercial DNA sequencing1,2. One emerging strate...
Identifying DNA species is crucial for diagnostics. For DNA identification, single-molecule DNA sequ...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI--COLUMBIA AT REQUEST OF AUTHOR.] Nanopore-based det...