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March 14, 2026Cell and Gene Therapy Insights0 citations

Engineering extracellular vesicles (exosomes) for nucleic acid delivery: exoASO‑STAT6® exosomes as a case study

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VBVijetha Bhat

Key Points

  • This research focuses on engineering extracellular vesicles for targeted nucleic acid delivery.
  • Assessment of engineered exosomes using the engEx® cell engineering technology.
  • In vivo testing of engineered EVs in tumor models.
  • Evaluation of safety and efficacy in Phase 1 clinical trials.
  • Exosomes effectively deliver nucleic acids to the tumor microenvironment.
  • The engEx technology shows potential for improved EV therapeutic applications.

Abstract

Extracellular vesicles (EVs), including exosomes, can transport a range of different molecular cargo to target cells, making them a promising therapeutic modality. EVs can be engineered to load molecules on their surface or inside the lumen through identified scaffold proteins, namely PTGFRN and BASP-1, respectively. Using these scaffold proteins, the engEx® cell engineering technology, acquired by Lonza from Codiak BioSciences, has been developed to engineer exosome therapeutics including exoSTING®, exoASO-STAT6®, and exoIL-12™ exosomes. These have been tested in in vivo tumor models and subsequently evaluated in Phase 1 clinical trials. In particular, exoASO-STAT6 exosomes enable nucleic acid delivery to the tumor microenvironment and provides the ability to reprogram it. The Xcite® EV platform technology, developed based on the engEx technology, facilitates the generation of engineered EVs and is now available to the broader scientific community via Lonza’s service offerings.

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Cite This Study

Vijetha Bhat (2026) studied this question.

synapsesocial.com/papers/69b4b9db18185d8a39802088https://doi.org/10.18609/cgti.2026.021
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