DNA Origami‐Templated Aptamer Chiral Structures Realize Cellular Enantioselectivity

T Tingjie Song (Carl R. Woese Institute for Genomic Biology University of Illinois at Urbana‐Champaign Urbana Illinois USA) A Abhisek Dwivedy (Department of Bioengineering, Grainger College of Engineering) D Dhanush Gandavadi (Department of Bioengineering, Grainger College of Engineering) G Gayatri Chandran (Department of Electrical and Computer Engineering Grainger College of Engineering University of Illinois at Urbana‐Champaign Urbana Illinois USA) Y Yiquan An (Department of Advanced Manufacturing and Robotics Peking University Beijing China) M Mengxi Zheng (Department of Bioengineering, Grainger College of Engineering) X Xiaojing Wang L Lifeng Zhou (Department of Advanced Manufacturing and Robotics Peking University Beijing China) Y Yang Zhao X Xing Wang

Abstract

ABSTRACT Chirality refers to handedness as left‐ or right‐handed form of a molecule or molecular construct by synthesis or self‐assembly. In biology, chirality plays critical roles in determining the structures and functions of biomolecules such as proteins. In this study, we demonstrated that structural chirality generated by patterning multiple cell surface protein biomarker‐binding aptamers on a tubular‐shaped DNA origami (“DNA tube”) can realize differentness in cellular interaction, nanostructure uptake, cancer drug delivery, and consequent cell killing. Formation of the DNA tube and its ability to arrange external elements into left‐ or right‐handed form have been characterized by gel electrophoresis, atomic force microscopy, and transmission electron microscopy. Our fluorescence‐based cell experiments showed that the DNA tube‐templated aptamers of a left‐handed pattern can yield a higher cell uptake than those in a right‐form pattern. When loaded with an anticancer drug, Daunorubicin (Dau), the left‐handed tube‐aptamer‐Dau construct showed greater than double the cancer cell cytotoxicity than the construct in the right‐handed. Our study not only revealed that cell surface proteins interaction with the aptamers spatially organized into different chiral patterns can yield different cellular interaction and internalization efficiencies, but offered a new and versatile cancer drug delivery strategy for enhanced target cell treatment efficacy.

Article Details

Volume / Issue Vol. 38, Issue 12
Published February 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (10)

T

Tingjie Song

Carl R. Woese Institute for Genomic Biology University of Illinois at Urbana‐Champaign Urbana Illinois USA

A

Abhisek Dwivedy

Department of Bioengineering, Grainger College of Engineering

D

Dhanush Gandavadi

Department of Bioengineering, Grainger College of Engineering

G

Gayatri Chandran

Department of Electrical and Computer Engineering Grainger College of Engineering University of Illinois at Urbana‐Champaign Urbana Illinois USA

Y

Yiquan An

Department of Advanced Manufacturing and Robotics Peking University Beijing China

M

Mengxi Zheng

Department of Bioengineering, Grainger College of Engineering

X

Xiaojing Wang

L

Lifeng Zhou

Department of Advanced Manufacturing and Robotics Peking University Beijing China

Y

Yang Zhao

X

Xing Wang