dna nanotechnology (BioApplications Inc)
90
Structured Review
BioApplications Inc
dna nanotechnology
Dna Nanotechnology, supplied by BioApplications Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/dna+nanotechnology/dna+based+plasmonic+heterogeneous+nanostructures/pm40170444-8-7-1
Average 90 stars, based on 1 article reviews
Dna Nanotechnology, supplied by BioApplications Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/dna+nanotechnology/dna+based+plasmonic+heterogeneous+nanostructures/pm40170444-8-7-1
Average 90 stars, based on 1 article reviews
dna nanotechnology - by Bioz Stars,
2026-09
90/100 stars
Images
Related Articles
DNA Hybridization:Article Title: Bioapplications of DNA nanotechnology at the solid–liquid interface Article Snippet: .. Cite this:DOI: 10.1039/c8cs00402a Bioapplications of other:Article Title: DNA Nanotweezers for Biosensing Applications: Recent Advances and Future Prospects. Article Snippet: DNA nanotweezers (DTs) are reversible DNA nanodevices that can optionally switch between opened and closed states.. Due to their excellent flexibility and high programmability, they have been recognized as a promising platform for constructing a diversity of biosensors and logic gates, as well as a versatile tool for molecular biology studies.. In this review, we provide an overview of biosensing applications using DTs. Article Title: The Surface Energy of Hydrogenated and Fluorinated Graphene. Article Snippet: The surface energy of graphene and its chemical derivatives governs fundamental interfacial interactions like molecular assembly, wetting, and doping.. However, quantifying the surface energy of supported two-dimensional (2D) materials, such as graphene, is difficult because (1) they are so thin that electrostatic interactions emanating from the underlying substrate are not completely screened, (2) the contribution from the monolayer is sensitive to its exact chemical state, and (3) the adsorption of airborne contaminants, as well as contaminants introduced during transfer processing, screens the electrostatic interactions from the monolayer and underlying substrate, changing the determined surface energy.. Here, we determine the polar and dispersive surface energy of bare, fluorinated, and hydrogenated graphene through contact angle measurements with water and diiodomethane. Article Title: Advances in Functionalized Biocomposites of Living Cells Combined with Metal-Organic Frameworks. Article Snippet: Motivated by the remarkable innate characteristics of cells in living organisms, we have found that hybrid materials that combine bioorganisms with nanomaterials have significantly propelled advancements in industrial applications.. However, the practical deployment of unmodified living entities is inherently limited due to their sensitivity to environmental fluctuations.. To surmount these challenges, an efficacious strategy for the biomimetic mineralization of living organisms with nanomaterials has emerged, demonstrating extraordinary potential in biotechnology. Article Title: Dynamic behavior of the single-strand DNA molecules from the hydrophilic to hydrophobic regions on graphene oxide surface driven by heating. Article Snippet: Heating affects the interfacial properties of two-dimensional nanomaterials, especially when they interact with biomolecules.. Here, we theoretically studied the dynamic processes driving single-strand DNA (ssDNA) molecules from the hydrophilic to hydrophobic regions on the graphene oxide (GO) surface by heating, as reported by recent experiments.. This was accomplished by using multi-sample molecular dynamics simulations in the NVT ensemble, with the temperature increasing from 300 K to 350 K. When the temperature increased, the lifetime of hydrogen bonds between water molecule and oxygen-containing groups on the GO surface decreased from 10.04 ps to 6.86 ps, and the end-to-end distance of 4-mer and 8-mer ssDNA molecules also decreased. Article Title: Toehold-Mediated Selective Assembly of Compact Discrete DNA Nanostructures. Article Snippet: Production of small discrete DNA nanostructures containing covalent junctions requires reliable methods for the synthesis and assembly of branched oligodeoxynucleotide (ODN) conjugates.. This study reports an approach for self-assembly of hard-to-obtain primitive discrete DNA nanostructures “nanoethylenes”, dimers formed by double-stranded oligonucleotides using V-shaped furcate blocks.. We scaled up the synthesis of V-shaped oligonucleotide conjugates using pentaerythritol-based diazide and alkyne-modified oligonucleotides using copper(I)-catalyzed azide-alkyne cycloaddition (CuAAC) and optimized the conditions for “nanoethylene” formation. Membrane:Article Title: Bioapplications of Cell Membrane Engineering with DNA Nanotechnology. Article Snippet: Engineering the cell surface has emerged as a significant method for manipulating cell behavior and determining cell fate.. Regulating the composition or structure of cell membranes has the potential to impact the essential roles they play in biointerfacing, signal transduction, and compartmentalization.. This presents significant prospects for the advancement of cell-based biomedicine. |