Erythrocyte membrane camouflaged siRNA/chemodrug nanoassemblies for cancer combination therapy
The combination of gene therapy and chemotherapy is emerging as a promising strategy for multidrug-resistant (MDR) cancer treatment. However, due to the significant differences in the physicochemical properties between macromolecular oligonucleotides and chemodrugs, the co-delivery of different drug...
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Veröffentlicht in: | Biomaterials science 2022-11, Vol.1 (22), p.661-6613 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The combination of gene therapy and chemotherapy is emerging as a promising strategy for multidrug-resistant (MDR) cancer treatment. However, due to the significant differences in the physicochemical properties between macromolecular oligonucleotides and chemodrugs, the co-delivery of different drug combos makes for a great challenge. Moreover, the biosafety of the carriers and poor lysosomal escape of oligonucleotides are the main concerns for combination therapy. Herein, we developed a facile carrier-free strategy to co-deliver small interfering RNA (siRNA) and positive-charged chemodrugs (termed cationic amphiphilic chemodrugs, CACDs), in which CACDs interact with negative-charged anti P-glycoprotein siRNA (siPgp) without extra carriers and self-assemble into siPgp/CACDs nanoparticles (NPs
[siPgp/CACDs]
). Meanwhile, the CACDs also play an important role in the lysosomal escape of siRNA. Both molecular dynamics simulations and experimental characterization demonstrate that CACDs and siRNA can self-assemble into nanoparticles. Furthermore, red blood cell membrane (RBCm) was used to camouflage the NPs
[siPgp/CACDs]
to enhance their physiological stability and prolong the circulation time. Both
in vitro
and
in vivo
assessments reveal their excellent performance for drug-resistant cancer treatment. This strategy provides a safe and efficient pathway for gene and chemo combination therapy for MDR cancers.
Erythrocyte membrane camouflaged nanoassemblies of siRNA/chemodrugs were constructed, in which cationic amphiphilic chemodrugs interact with negatively charged siRNA and self-assemble into siRNA/chemodrug nanoparticles for combination cancer therapy. |
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ISSN: | 2047-4830 2047-4849 |
DOI: | 10.1039/d2bm01478e |