AI Article Synopsis

  • Delivering large therapeutic proteins effectively across biological barriers like the blood-brain barrier is challenging, but Toxoplasma gondii, a parasite, shows promise in overcoming this issue by naturally moving from the gut to the central nervous system.
  • Researchers have engineered T. gondii's secretion systems to facilitate the delivery of these proteins into neurons, testing their effectiveness in lab cultures, brain organoids, and living mice.
  • The study specifically highlights the successful delivery of the MeCP2 protein, which could be a potential treatment for Rett syndrome, while also discussing the system's limitations and potential for future improvements.

Article Abstract

Delivering macromolecules across biological barriers such as the blood-brain barrier limits their application in vivo. Previous work has demonstrated that Toxoplasma gondii, a parasite that naturally travels from the human gut to the central nervous system (CNS), can deliver proteins to host cells. Here we engineered T. gondii's endogenous secretion systems, the rhoptries and dense granules, to deliver multiple large (>100 kDa) therapeutic proteins into neurons via translational fusions to toxofilin and GRA16. We demonstrate delivery in cultured cells, brain organoids and in vivo, and probe protein activity using imaging, pull-down assays, scRNA-seq and fluorescent reporters. We demonstrate robust delivery after intraperitoneal administration in mice and characterize 3D distribution throughout the brain. As proof of concept, we demonstrate GRA16-mediated brain delivery of the MeCP2 protein, a putative therapeutic target for Rett syndrome. By characterizing the potential and current limitations of the system, we aim to guide future improvements that will be required for broader application.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11306108PMC
http://dx.doi.org/10.1038/s41564-024-01750-6DOI Listing

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