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An effective multi-stage liposomal DNA origami nanosystem for in vivo cancer therapy

Palazzolo S.
•
Hadla M.
•
Spena C. R.
altro
Rizzolio F.
2019
  • journal article

Periodico
CANCERS
Abstract
DNA origami systems could be important candidates for clinical applications. Unfortunately, their intrinsic properties such as the activation of non-specific immune system responses leading to inflammation, instability in physiological solutions, and a short in vivo lifetime are the major challenges for real world applications. A compact short tube DNA origami (STDO) of 30 nm in length and 10 nm in width was designed to fit inside the core of a stealth liposome (LSTDO) of about 150 nm to remote load doxorubicin. Biocompatibility was tested in three-dimensional (3D) organoid cultures and in vivo. Efficacy was evaluated in different cell lines and in a xenograft breast cancer mouse model. As described in a previous work, LSTDO is highly stable and biocompatible, escaping the recognition of the immune system. Here we show that LSTDO have an increased toleration in mouse liver organoids used as an ex vivo model that recapitulate the tissue of origin. This innovative drug delivery system (DDS) improves the antitumoral efficacy and biodistribution of doxorubicin in tumor-bearing mice and decreases bone marrow toxicity. Our application is an attractive system for the remote loading of other drugs able to interact with DNA for the preparation of liposomal formulations.
DOI
10.3390/cancers11121997
WOS
WOS:000507382100174
Archivio
http://hdl.handle.net/11368/2977005
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85076493836
https://www.mdpi.com/2072-6694/11/12/1997
Diritti
open access
license:creative commons
license:creative commons
license uri:http://creativecommons.org/licenses/by/4.0/
license uri:http://creativecommons.org/licenses/by/4.0/
FVG url
https://arts.units.it/bitstream/11368/2977005/1/cancers-11-01997.pdf
Soggetti
  • Acute toxicity

  • Breast cancer

  • DNA origami

  • Doxorubicin

  • Liposome

  • Organoid

  • Remote loading

Scopus© citazioni
21
Data di acquisizione
Jun 7, 2022
Vedi dettagli
Web of Science© citazioni
31
Data di acquisizione
Mar 25, 2024
Visualizzazioni
3
Data di acquisizione
Apr 19, 2024
Vedi dettagli
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