Background: Gene therapy has emerged as a new strategy for cancer therapy. As an alternative nucleic acid material, messenger ribonucleic acid (mRNA) is being increasingly utilized in cancer gene therapy. However, unfulfilled requirements and a lack of ideal mRNA delivery vectors persist. Methods: We developed an advanced mRNA delivery system, DMP-039, by fusing a cell-penetrating peptide, cRGD-R9, and a cationic nano-sized DMP backbone together. The DMP gene vector backbone was synthesized by the self-assembly of DOTAP lipid and mPEG-PCL polymer. Introduction of the cRGD-R9 peptide onto the DMP backbone was performed to elevate the mRNA delivery capacity, which resulted in a peptide-functionalized hybrid delivery system. Results: The average size of the synthesized DMP-039 was 268.9 ± 12.4 nm (PDI = 0.382), with a potential of 17.4 ± 0.5 mV. The synthesized DMP-039 hybrid nanoparticles exhibited high mRNA delivery efficiency through multiple mechanisms during transmembrane trans-portation. By loading the encoding mRNA from the suicide gene Bim, a locally administered mBim/DMP-039 complex strongly inhibited growth in two colon cancer models. Moreover, intravenous administration of the mBim/DMP-039 complex efficiently suppressed C26 pulmonary metastatic tumor progression with high safety. The in vivo distribution, degrada-tion, and excretion were also investigated in detail. Conclusion: Our results suggest that the DMP-039 peptide-functionalized hybrid nanopar-ticle is an advanced candidate for mRNA-based suicide gene therapy.
CITATION STYLE
Gao, Y., Men, K., Pan, C., Li, J., Wu, J., Chen, X., … Duan, X. (2021). Functionalized dmp-039 hybrid nanoparticle as a novel mrna vector for efficient cancer suicide gene therapy. International Journal of Nanomedicine, 16, 5211–5232. https://doi.org/10.2147/IJN.S319092
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