Modular programming of interaction and geometric specificity enables assembly of complex DNA origami nanostructures
Publication
, Preprint
Saha, R; Hayakawa, D; Videbaek, TE; Price, M; Wei, W-S; Pombo, J; Duke, D; Arya, G; Grason, GM; Rogers, WB; Fraden, S
February 7, 2025
Duke Scholars
Publication Date
February 7, 2025
Citation
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ICMJE
MLA
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Saha, R., Hayakawa, D., Videbaek, T. E., Price, M., Wei, W.-S., Pombo, J., … Fraden, S. (2025). Modular programming of interaction and geometric specificity enables
assembly of complex DNA origami nanostructures.
Saha, Rupam, Daichi Hayakawa, Thomas E. Videbaek, Mason Price, Wei-Shao Wei, Juanita Pombo, Daniel Duke, et al. “Modular programming of interaction and geometric specificity enables
assembly of complex DNA origami nanostructures,” February 7, 2025.
Saha R, Hayakawa D, Videbaek TE, Price M, Wei W-S, Pombo J, et al. Modular programming of interaction and geometric specificity enables
assembly of complex DNA origami nanostructures. 2025.
Saha, Rupam, et al. Modular programming of interaction and geometric specificity enables
assembly of complex DNA origami nanostructures. 7 Feb. 2025.
Saha R, Hayakawa D, Videbaek TE, Price M, Wei W-S, Pombo J, Duke D, Arya G, Grason GM, Rogers WB, Fraden S. Modular programming of interaction and geometric specificity enables
assembly of complex DNA origami nanostructures. 2025.
Publication Date
February 7, 2025