Kidney-Targeted Cytosolic Delivery of siRNA Using a Small-Sized Mirror DNA Tetrahedron for Enhanced Potency
- Authors
- Thai, H.B.D.; Kim, K.-R.; Hong, K.T.; Voitsitskyi, T.; Lee, J.-S.; Mao, C.; Ahn, D.-R.
- Issue Date
- 2020
- Publisher
- American Chemical Society
- Citation
- ACS Central Science, v.6, no.12, pp.2250 - 2258
- Indexed
- SCIE
SCOPUS
- Journal Title
- ACS Central Science
- Volume
- 6
- Number
- 12
- Start Page
- 2250
- End Page
- 2258
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/60744
- DOI
- 10.1021/acscentsci.0c00763
- ISSN
- 2374-7943
- Abstract
- A proper intracellular delivery method with target tissue specificity is critical to utilize the full potential of therapeutic molecules including siRNAs while minimizing their side effects. Herein, we prepare four small-sized DNA tetrahedrons (sTds) by self-assembly of different sugar backbone-modified oligonucleotides and screened them to develop a platform for kidney-targeted cytosolic delivery of siRNA. An in vivo biodistribution study revealed the kidney-specific accumulation of mirror DNA tetrahedron (L-sTd). Low opsonization of L-sTd in serum appeared to avoid liver clearance and keep its size small enough to be filtered through the glomerular basement membrane (GBM). After GBM filtration, L-sTd could be delivered into tubular cells by endocytosis. The kidney preference and the tubular cell uptake property of the mirror DNA nanostructure could be successfully harnessed for kidney-targeted intracellular delivery of p53 siRNA to treat acute kidney injury (AKI) in mice. Therefore, L-sTd could be a promising platform for kidney-targeted cytosolic delivery of siRNA to treat renal diseases. © 2020 American Chemical Society.
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