A Logic-Gated Nanorobot for Targeted Transport of Molecular Payloads

Shawn M. Douglas(Inspire Institute), Ido Bachelet(Inspire Institute), George M. Church(Inspire Institute)
Science
February 16, 2012
Cited by 2,182

Abstract

We describe an autonomous DNA nanorobot capable of transporting molecular payloads to cells, sensing cell surface inputs for conditional, triggered activation, and reconfiguring its structure for payload delivery. The device can be loaded with a variety of materials in a highly organized fashion and is controlled by an aptamer-encoded logic gate, enabling it to respond to a wide array of cues. We implemented several different logical AND gates and demonstrate their efficacy in selective regulation of nanorobot function. As a proof of principle, nanorobots loaded with combinations of antibody fragments were used in two different types of cell-signaling stimulation in tissue culture. Our prototype could inspire new designs with different selectivities and biologically active payloads for cell-targeting tasks.


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