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Functionalizing DNA origami to investigate and interact with biological systems
DNA origami has emerged as a powerful method to generate DNA nanostructures with
dynamic properties and nanoscale control. These nanostructures enable complex …
dynamic properties and nanoscale control. These nanostructures enable complex …
Multifunctional biomolecule nanostructures for cancer therapy
J Wang, Y Li, G Nie - Nature Reviews Materials, 2021 - nature.com
Biomolecule-based nanostructures are inherently multifunctional and harbour diverse
biological activities, which can be explored for cancer nanomedicine. The supramolecular …
biological activities, which can be explored for cancer nanomedicine. The supramolecular …
Functionalizing framework nucleic‐acid‐based nanostructures for biomedical application
T Zhang, T Tian, Y Lin - Advanced Materials, 2022 - Wiley Online Library
Strategies for functionalizing diverse tetrahedral framework nucleic acids (tFNAs) have been
extensively explored since the first successful fabrication of tFNA by Turberfield. One‐pot …
extensively explored since the first successful fabrication of tFNA by Turberfield. One‐pot …
DNA origami
Biological materials are self-assembled with near-atomic precision in living cells, whereas
synthetic 3D structures generally lack such precision and controllability. Recently, DNA …
synthetic 3D structures generally lack such precision and controllability. Recently, DNA …
DNA functional materials assembled from branched DNA: design, synthesis, and applications
Y Dong, C Yao, Y Zhu, L Yang, D Luo… - Chemical Reviews, 2020 - ACS Publications
DNA is traditionally known as a central genetic biomolecule in living systems. From an
alternative perspective, DNA is a versatile molecular building-block for the construction of …
alternative perspective, DNA is a versatile molecular building-block for the construction of …
Gene-encoding DNA origami for mammalian cell expression
DNA origami may enable more versatile gene delivery applications through its ability to
create custom nanoscale objects with specific targeting, cell-invading, and intracellular …
create custom nanoscale objects with specific targeting, cell-invading, and intracellular …
DNA nanotechnology-enabled drug delivery systems
Over the past decade, we have seen rapid advances in applying nanotechnology in
biomedical areas including bioimaging, biodetection, and drug delivery. As an emerging …
biomedical areas including bioimaging, biodetection, and drug delivery. As an emerging …
A DNA nanorobot functions as a cancer therapeutic in response to a molecular trigger in vivo
Nanoscale robots have potential as intelligent drug delivery systems that respond to
molecular triggers,,,. Using DNA origami we constructed an autonomous DNA robot …
molecular triggers,,,. Using DNA origami we constructed an autonomous DNA robot …
DNA origami: scaffolds for creating higher order structures
DNA has become one of the most extensively used molecular building blocks for
engineering self-assembling materials. DNA origami is a technique that uses hundreds of …
engineering self-assembling materials. DNA origami is a technique that uses hundreds of …
Nanoscale self-assembly for therapeutic delivery
S Yadav, AK Sharma, P Kumar - Frontiers in bioengineering and …, 2020 - frontiersin.org
Self-assembly is the process of association of individual units of a material into highly
arranged/ordered structures/patterns. It imparts unique properties to both inorganic and …
arranged/ordered structures/patterns. It imparts unique properties to both inorganic and …