most citedRecent advances in DNA origami-engineered nanomaterials and applications

346 citations · 361 across the 2 of their papers we have counts for

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physics.bio-ph202515 cited

Modulating lipid membrane morphology by dynamic DNA origami networks

Juanjuan Yang, Kevin Jahnke, Ling Xin +11

Membrane morphology and its dynamic adaptation regulate many cellular functions, which are often mediated by membrane proteins. Advances in DNA nanotechnology have enabled the real…

physics.bio-ph2025346 cited

Recent advances in DNA origami-engineered nanomaterials and applications

Pengfei Zhan, Andreas Peil, Qiao Jiang +9

DNA nanotechnology is a unique field, where physics, chemistry, biology, mathematics, engineering, and materials science can elegantly converge. Since the original proposal of Nadr…

physics.bio-ph2021

DNA-assembled nanoarchitectures with multiple components in regulated and coordinated motion

Pengfei Zhan, Maximilian J. Urban, Steffen Both +4

Coordinating functional parts to operate in concert is essential for machinery. In gear trains, meshed gears are compactly interlocked, working together to impose rotation or trans…

physics.bio-ph2021

DNA-Assembled Multilayer Sliding Nanosystems

Pengfei Zhan, Steffen Both, Thomas Weiss +1

DNA nanotechnology allows for the realization of complex nanoarchitectures in which the spatial arrangements of different constituents and most functions can be enabled by DNA. Whe…

physics.bio-ph2021

DNA origami

Swarup Dey, Chunhai Fan, Kurt V. Gothelf +9

Biological materials are self-assembled with near-atomic precision in living cells, whereas synthetic 3D structures generally lack such precision and controllability. Recently, DNA…

physics.bio-ph2021

DNA Origami Catenanes Templated by Gold Nanoparticles

Andreas Peil, Pengfei Zhan, Na Liu

Mechanically interlocked molecules have marked a breakthrough in the field of topological chemistry and boosted the vigorous development of molecular machinery. As an archetypal ex…