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Automated design of 3D DNA origami with non-rasterized 2D curvature

delete2022-12-23
delete9
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OA
AI
D
Daniel Fu
R
Raghu Pradeep Narayanan
A
Abhay Prasad
F
Fei Zhang
D
Dewight Williams
J
John S. Schreck
H
Hao Yan *
J
John H. Reif *
DOI:10.1126/sciadv.ade4455delete
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Abstract

Abstract

En 中文
Improving the precision and function of encapsulating three-dimensional (3D) DNA nanostructures via curved geometries could have transformative impacts on areas such as molecular transport, drug delivery, and nanofabrication. However, the addition of non-rasterized curvature escalates design complexity without algorithmic regularity, and these challenges have limited the ad hoc development and usage of previously unknown shapes. In this work, we develop and automate the application of a set of previously unknown design principles that now includes a multilayer design for closed and curved DNA nanostructures to resolve past obstacles in shape selection, yield, mechanical rigidity, and accessibility. We design, analyze, and experimentally demonstrate a set of diverse 3D curved nanoarchitectures, showing planar asymmetry and examining partial multilayer designs. Our automated design tool implements a combined algorithmic and numerical approximation strategy for scaffold routing and crossover placement, which may enable wider applications of general DNA nanostructure design for nonregular or oblique shapes.
Keywords:
FOLDING DNA
NANOSTRUCTURES
LIPOSOMES
NANOROBOT
SHAPES
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Science Advances cover
Science Advances
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Arizona State University
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Duke University
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University of California System
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arizona state university-tempe
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