Programmable, self-assembled DNA nanodevices for cellular programming and tissue engineering

A Gangrade, N Stephanopoulos, D Bhatia - Nanoscale, 2021 - pubs.rsc.org
DNA-based nanotechnology has evolved into an autonomous, highly innovative, and
dynamic field of research at the nexus of supramolecular chemistry, nanotechnology …

Controllable dynamics of complex DNA nanostructures

W Wang, Y Shen, B Wei - Nanoscale, 2023 - pubs.rsc.org
In the past four decades, a variety of self-assembly design frameworks have led to the
construction of versatile DNA nanostructures with increasing complexity and controllability …

Induced Self‐Assembly of Vitamin E‐Spermine/siRNA Nanocomplexes via Spermine/Helix Groove‐Specific Interaction for Efficient siRNA Delivery and Antitumor …

X Zhao, Q Xu, Q Wang, X Liang, J Wang… - Advanced …, 2024 - Wiley Online Library
Gene therapy has been one of potential strategies for the treatment of different diseases,
where efficient and safe gene delivery systems are also extremely in need. Current lipid …

Golden Gate Assembly of DNA Nanostructures

W Zhang, H Wu, W Wang, B Wei - ACS Materials Letters, 2023 - ACS Publications
Golden Gate assembly is a popular molecular cloning method to assemble multiple DNA
fragments in a “one-pot” enzymatic reaction. Taking advantage of the high combination …

Disassembly of DNA origami dimers controlled by programmable polymerase primers

K Liao, K Chen, C Xie, Z Chen, L Pan - Chemical Communications, 2022 - pubs.rsc.org
Dynamic regulation of DNA origami nanostructures is important for the fabrication of
intelligent DNA nanodevices. Toehold-mediated strand displacement is a common …

DNA Strand Displacement Computing Model for the SAT Problem

J Yang, X Pang, Z Tang, X Yang… - Journal of Physics …, 2021 - iopscience.iop.org
DNA origami is widely used in DNA computing by its programmability and nano-
addressability. This study presents the solution for the satisfiability (SAT) problem utilizing …