Litcius/Paper detail

Ionizable nanoemulsions for RNA delivery into the central nervous system – importance of diffusivity

Mireya L. Borrajo, Aloia Quijano, Philipp Lapuhs, Ana I. Rodríguez‐Pérez, Shubaash Anthiya, José L. Labandeira‐García, Rita Valenzuela, Marı́a José Alonso

2024Journal of Controlled Release15 citationsDOIOpen Access PDF

Abstract

Lipid nanoparticles (LNPs) currently dominate the RNA delivery landscape; however their limited diffusivity hampers targeted tissue dissemination, and, hence, their capacity for intracellular drug delivery. This is especially relevant for tissues such as the central nervous system (CNS), where overcoming proactive brain barriers is crucial for the efficacy of genetic therapeutics. This research aimed to create ionizable nanoemulsions (iNEs), a new generation of RNA delivery systems with enhanced diffusivity. The developed iNEs (consisting of the combination of C12-200, DOPE, Vitamin E, and DMG-PEG) with a size below 100 nm, neutral surface charge, and high RNA loading capacity, showed excellent cell viability and transfection efficiency in various cellular models, including neurons, astrocytes, and microglia. Subsequently, iNEs containing mRNA GFP were tested for CNS transfection, highlighting their exceptional diffusivity and selective transfection of neurons following intra-parenchymal administration.

Topics & Concepts

Central nervous systemChemistryDelivery systemThermal diffusivityNeurosciencePharmacologyMedicineBiologyPhysicsQuantum mechanicsRNA Interference and Gene DeliveryAdvanced biosensing and bioanalysis techniquesNanoparticle-Based Drug Delivery