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Novel Endogenous Engineering Platform for Robust Loading and Delivery of Functional mRNA by Extracellular Vesicles.

Antje M ZicklerXiuming LiangDhanu GuptaDoste R MamandMariacristina De LucaGiulia CorsoLorenzo ErrichelliJustin HeanTitash SenOmnia M ElsharkasyNoriyasu KameiZheyu NiuGuannan ZhouHouze ZhouSamantha RoudiOscar P B WiklanderAndre GörgensJoel Z NordinVirginia Castilla LlorenteSamir El Andaloussi
Published in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2024)
Messenger RNA (mRNA) has emerged as an attractive therapeutic molecule for a plethora of clinical applications. For in vivo functionality, mRNA therapeutics require encapsulation into effective, stable, and safe delivery systems to protect the cargo from degradation and reduce immunogenicity. Here, a bioengineering platform for efficient mRNA loading and functional delivery using bionormal nanoparticles, extracellular vesicles (EVs), is established by expressing a highly specific RNA-binding domain fused to CD63 in EV producer cells stably expressing the target mRNA. The additional combination with a fusogenic endosomal escape moiety, Vesicular Stomatitis Virus Glycoprotein, enables functional mRNA delivery in vivo at doses substantially lower than currently used clinically with synthetic lipid-based nanoparticles. Importantly, the application of EVs loaded with effective cancer immunotherapy proves highly effective in an aggressive melanoma mouse model. This technology addresses substantial drawbacks currently associated with EV-based nucleic acid delivery systems and is a leap forward to clinical EV applications.
Keyphrases
  • nucleic acid
  • binding protein
  • mouse model
  • drug delivery
  • cell proliferation
  • cancer therapy
  • walled carbon nanotubes