Dimensional control of DNA nanostructures enhances cellular uptake and guides tissue-regenerative responses [PDF]
Precise regulation of cellular functions is fundamental for advancing tissue regeneration and drug delivery systems. Structural DNA nanotechnology enables the design of well-defined nanostructures, emerging as a promising platform in these biomedical ...
Xinyue Tang +10 more
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Prospects and challenges of dynamic DNA nanostructures in biomedical applications
The physicochemical nature of DNA allows the assembly of highly predictable structures via several fabrication strategies, which have been applied to make breakthroughs in various fields.
Taoran Tian, Yanjing Li, Yunfeng Lin
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Rationally Programming Nanomaterials with DNA for Biomedical Applications
DNA is not only a carrier of genetic information, but also a versatile structural tool for the engineering and self‐assembling of nanostructures.
Liangcan He +3 more
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5′-(CGA)n sequence-assisted pH-controlled assembly of supramolecular DNA nanostructure [PDF]
Herein, the DNA strands containing 5′-(CGA)n and consecutive guanines are used to construct supramolecular DNA nanostructures that are size-controlled by pH values.
Yuting Yan +5 more
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Chemically modified DNA nanostructures for drug delivery
Based on predictable, complementary base pairing, DNA can be artificially pre-designed into versatile DNA nanostructures of well-defined shapes and sizes. With excellent addressability and biocompatibility, DNA nanostructures have been widely employed in
Yuang Wang +7 more
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DNA Nanotechnology-Enabled Fabrication of Metal Nanomorphology
In recent decades, DNA nanotechnology has grown into a highly innovative and widely established field. DNA nanostructures have extraordinary structural programmability and can accurately organize nanoscale materials, especially in guiding the synthesis ...
Mo Xie +5 more
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DNA nanotechnology provides an avenue for the construction of programmable dynamic molecular systems
Self-assembled supramolecular structures in living cells and their dynamics underlie various cellular events, such as endocytosis, cell migration, intracellular transport, cell metabolism, and gene expression.
Yusuke Sato, Yuki Suzuki
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3D DNA Nanostructures: The Nanoscale Architect
Structural DNA nanotechnology is a pioneering biotechnology that presents the opportunity to engineer DNA-based hardware that will mediate a profound interface to the nanoscale.
Daniel Fu, John Reif
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Data-driven enzyme immobilisation: a case study using DNA to immobilise galactose oxidase
Biocatalysis has the potential to enable green chemistry. New methods of enzyme immobilisation will be required to improve enzyme stability, product purification, and compatibility of different enzymes in the same reaction conditions.
Wolfgang Ott +4 more
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Single-Molecule FRET: A Tool to Characterize DNA Nanostructures
DNA nanostructures often involve temporally evolving spatial features. Tracking these temporal behaviors in real time requires sophisticated experimental methods with sufficiently high spatial and temporal resolution.
Nibedita Pal
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