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Nature Biotechnology generation dna sequencing
Generation Dna Sequencing, supplied by Nature Biotechnology, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/generation+sequencing/nanopore+sequencing/us12655481-89-0-3
Average 86 stars, based on 1 article reviews
generation dna sequencing - by Bioz Stars, 2026-09
86/100 stars

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Related Articles

Next-Generation Sequencing:

Article Title: DNA sequencing using controlled strand displacement
Article Snippet: .. “Next-generation DNA sequencing.” Nature biotechnology 26.10 (2008): 1135-1145; Shendure, J., et al. “Advanced sequencing technologies: methods and goals”. ..

Sequencing:

Article Title: DNA sequencing using controlled strand displacement
Article Snippet: .. “Next-generation DNA sequencing.” Nature biotechnology 26.10 (2008): 1135-1145; Shendure, J., et al. “Advanced sequencing technologies: methods and goals”. ..

other:

Article Title: DMS-MaPseq and DREEM Analyses Implicate the Critical Role of RNA Structural Dynamics in Turnip Yellow Mosaic Virus Pathogenicity.
Article Snippet: J. G. A. Aw, S. W. Lim, J. X. Wang, et al., “Determination of IsoformSpecif ic RNA Structure With Nanopore Long Reads,” Nature Biotechnology 39 (2021): 336–346, https://doi.org/10.1038/s41587- 020- 0712- z .

Article Title: Breaking the Size Barrier in Glass Nanopores to 2 nm: A Path to High-Resolution Biomolecular Fingerprinting.
Article Snippet: Glass nanopores have emerged as a promising single-molecule sensing platform due to their low intrinsic noise, facile fabrication, and excellent integrability.. The fabrication of glass nanopores with diameters down to 1–3 nm, a scale comparable to nucleic acids and peptides, is a critical step toward high-resolution fingerprinting or event sequencing of these molecules, yet it remains a significant challenge.. Here, it has overcome this obstacle by direct fabrication of ~2 nm glass nanopores, exemplified by the detection of double-stranded DNA (dsDNA) with an exceptional signal-to-noise ratio (SNR), exhibiting over 80% ionic current blockade.

Article Title: High-resolution repeat structure analysis in myotonic dystrophy type 2 diagnostics using short-read whole genome sequencing.
Article Snippet: “Analysis of Short Tandem Repeat Expansions and Their Methylation State with Nanopore Sequencing.” Nature Biotechnology 37 (12): 1478–81.

Methylation Sequencing:

Article Title: Targeting Dnmt3a/m5C/RelA Axis Attenuates Microglia Inflammatory Response and Improves Postoperative Recovery in Chronic Compressive Cervical Spinal Cord Injury.
Article Snippet: .. Q. Dai, C. Ye, I. Irkliyenko, et al., “Ultrafast Bisulfite Sequencing etection of 5-methylcytosine in DNA and RNA,” Nature Biotechnology 2, no. 10 (2024): 1559–1570. ..

DNA Sequencing:

Article Title: Interrogating nanopores with light: optipore sensing for single molecule analyses.
Article Snippet: .. Nature Biotechnology 2008 26:10 2008, 26 (10), 1146–1153. (16) McNally, B.; Singer, A.; Yu, Z.; Sun, Y.; Weng, Z.; Meller, A. Optical Recognition of Converted DNA Nucleotides for Single-Molecule DNA Sequencing Using Nanopore Arrays. ..

Nanopore Sequencing:

Article Title: Nanopore sequencing.
Article Snippet: AU2020279629B2 Phosphoramidate-based monomers for use in the synthesis of expandable polymers for nanopore-based sensing.. Such monomers comprise a reporter construct that contain a first reporter code, a symmetrical chemical brancher bearing a translocation control element, and a second reporter code, wherein the ends of the reporter construct are attached to a phosphoramidate nucleoside.. F. Hoffmann-La Roche (Basel, Switzerland) O’Connell D, Jacobs A, Vellucci J, Banasik B, Lopez M, Goodman D, Nabavi M, Tabone J, Kokoris MS, Machacek C, Merrill L, Chandrasekar J, Kritzer S, Cech C 1/19/2023

Translocation Assay:

Article Title: Unraveling Posttranslational Modification Complexity: Advances in Quantitative Histone Proteoform Mass Spectrometry.
Article Snippet: Histone proteins and their posttranslational modifications are central to chromatin structure and function.. These modifications often occur in combinations, generating a diverse array of histone proteoforms that contribute to the dynamic regulation of chromatin architecture.. Advancements in mass spectrometry‐based proteomics, particularly top‐down and middle‐down approaches, have significantly enhanced our ability to characterize these proteoforms and elucidate PTM crosstalk.



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<t>Single-cell</t> <t>long-read</t> <t>sequencing</t> (scLRS) enhances tumor cell resolution by integrating methods for detecting splicing alterations and genetic variants. Schematic representation of how scLRS can visualize and combine multiple information types within the same cells to improve tumor cell resolution. Created in BioRender. Byrne, A. (2026) https://BioRender.com/mrmobm6 .
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Single-cell long-read sequencing (scLRS) enhances tumor cell resolution by integrating methods for detecting splicing alterations and genetic variants. Schematic representation of how scLRS can visualize and combine multiple information types within the same cells to improve tumor cell resolution. Created in BioRender. Byrne, A. (2026) https://BioRender.com/mrmobm6 .

Journal: Frontiers in Oncology

Article Title: Beyond counting: how single-cell long-read sequencing turns transcriptome complexity into precision targets

doi: 10.3389/fonc.2026.1800370

Figure Lengend Snippet: Single-cell long-read sequencing (scLRS) enhances tumor cell resolution by integrating methods for detecting splicing alterations and genetic variants. Schematic representation of how scLRS can visualize and combine multiple information types within the same cells to improve tumor cell resolution. Created in BioRender. Byrne, A. (2026) https://BioRender.com/mrmobm6 .

Article Snippet: Adopting third-generation long-read sequencing platforms, such as those developed by Pacific Biosciences (PacBio) and Oxford Nanopore Technologies (ONT), offers a solution to overcome this limitation and deepen our understanding of the transcriptome.

Techniques: Single Cell, Sequencing