Results 151 to 160 of about 6,590 (201)
Review of: "Nano Bots assembly of DNA on the DNA origami method of DNA origami"
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Enzyme-powered DNA origami nanostructures for enhanced mucosal diffusion
Tollemeto M +7 more
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Journal of the American Chemical Society, 2023
Molecular tessellation research aims to elucidate the underlying principles that govern intricate patterns in nature and to leverage these principles to create precise and ordered structures across multiple scales, thereby facilitating the emergence of novel functionalities.
Yue Tang +8 more
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Molecular tessellation research aims to elucidate the underlying principles that govern intricate patterns in nature and to leverage these principles to create precise and ordered structures across multiple scales, thereby facilitating the emergence of novel functionalities.
Yue Tang +8 more
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Nano Letters, 2011
We demonstrate the assembly of functional hybrid nanopores for single molecule sensing by inserting DNA origami structures into solid-state nanopores. In our experiments, single artificial nanopores based on DNA origami are repeatedly inserted in and ejected from solid-state nanopores with diameters around 15 nm. We show that these hybrid nanopores can
Nicholas A W, Bell +6 more
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We demonstrate the assembly of functional hybrid nanopores for single molecule sensing by inserting DNA origami structures into solid-state nanopores. In our experiments, single artificial nanopores based on DNA origami are repeatedly inserted in and ejected from solid-state nanopores with diameters around 15 nm. We show that these hybrid nanopores can
Nicholas A W, Bell +6 more
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DNA origami and DNA origami silica hybrids for biomedical applications
Colloidal Nanoparticles for Biomedical Applications XVI, 2021In this paper we introduce DNA origami as a tool to study protein-protein interactions, including ligand-receptor interactions of the tumor necrosis superfamily. Additionally, we introduce DNA origami-templated biomineralization, which allows for the formation of super-stable inorganic nanoconstructs with programmable shape and size for potential ...
Johann M. Weck +2 more
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Chemical Society Reviews, 2021
We re-examine DNA origami nanoassemblies from four fundamental mechanical aspects of elasticity, pliability, plasticity and stability.
Jiahao Ji, Deepak Karna, Hanbin Mao
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We re-examine DNA origami nanoassemblies from four fundamental mechanical aspects of elasticity, pliability, plasticity and stability.
Jiahao Ji, Deepak Karna, Hanbin Mao
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DNA Origami: The Art of Folding DNA
Angewandte Chemie International Edition, 2011AbstractThe advent of DNA origami technology greatly simplified the design and construction of nanometer‐sized DNA objects. The self‐assembly of a DNA‐origami structure is a straightforward process in which a long single‐stranded scaffold (often from the phage M13mp18) is folded into basically any desired shape with the help of a multitude of short ...
Sacca, Barbara, Niemeyer, Christof M.
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Nature Methods, 2011
Complex, curved three-dimensional DNA nanostructures can be created using new DNA origami folding techniques.
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Complex, curved three-dimensional DNA nanostructures can be created using new DNA origami folding techniques.
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DNA Origami for Silicon Patterning
ACS Applied Materials & Interfaces, 2020Desoxyribonucleic acid (DNA) origami architectures are a promising tool for ultimate lithography because of their ability to generate nanostructures with a minimum feature size down to 2 nm. In this paper, we developed a method for silicon (Si) nanopatterning to face up current limitations for high-resolution patterning with standard microelectronic ...
Thomas, Guillaume +5 more
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