In Vivo Interactions of Nucleic Acid Nanostructures With Cells

Author:

Xiao Yu1ORCID,Liang Zhihui1ORCID,Shyngys Moldir1,Baekova Aiana1,Cheung Suen1,Muljadi Mathias Billy1,Bai Qianqian1ORCID,Zeng Lula1,Choi Chung Hang Jonathan12ORCID

Affiliation:

1. Department of Biomedical Engineering The Chinese University of Hong Kong Shatin New Territories Hong Kong

2. Center for Neuromusculoskeletal Restorative Medicine Hong Kong Science Park Shatin New Territories Hong Kong

Abstract

Abstract Nucleic acid nanostructures, derived from the assembly of nucleic acid building blocks (e.g., plasmids and oligonucleotides), are important intracellular carriers of therapeutic cargoes widely utilized in preclinical nanomedicine applications, yet their clinical translation remains scarce. In the era of “translational nucleic acid nanotechnology”, a deeper mechanistic understanding of the interactions of nucleic acid nanostructures with cells in vivo will guide the development of more efficacious nanomedicines. This review showcases the recent progress in dissecting the in vivo interactions of four key types of nucleic acid nanostructures (i.e., tile‐based, origami, spherical nucleic acid, and nucleic acid nanogel) with cells in rodents over the past five years. Emphasis lies on the cellular‐level distribution of nucleic acid nanostructures in various organs and tissues and the cellular responses induced by their cellular entry. Next, in the spirit of preclinical translation, this review features the latest interactions of nucleic acid nanostructures with cells in large animals and humans. Finally, the review offers directions for studying the interactions of nucleic acid nanostructures with cells from both materials and biology perspectives and concludes with some regulatory updates.

Funder

Innovation and Technology Commission

Innovation and Technology Commission - Hong Kong

Croucher Foundation

Publisher

Wiley

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