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Poly (β-amino Ester) Nanoparticles Modified with a Rabies Virus-derived peptide for the Delivery of Across a 3D Model of the Blood Brain Barrier. | LitMetric

Gene editing has emerged as a therapeutic approach to manipulate the genome for killing cancer cells, protecting healthy tissues, and improving immune response to a tumor. The gene editing tool achaete-scute family bHLH transcription factor 1 CRISPR guide RNA () is known to restore neuronal lineage potential, promote terminal differentiation, and attenuate tumorigenicity in glioblastoma tumors. Here, we fabricated a polymeric nonviral carrier to encapsulate ASCL1-gRNA by electrostatic interactions and deliver it into glioblastoma cells across a 3D in vitro model of the blood-brain barrier (BBB). To mimic rabies virus (RV) neurotropism, gene-loaded poly (β-amino ester) nanoparticles are surface functionalized with a peptide derivative of rabies virus glycoprotein (RVG29). The capability of the obtained NPs, hereinafter referred to as RV-like NPs, to travel across the BBB, internalize into glioblastoma cells and deliver are investigated in a 3D BBB model through flow cytometry and CLSM microscopy. The formation of nicotinic acetylcholine receptors in the 3D BBB model is confirmed by immunochemistry. These receptors are known to bind to RVG29. Unlike Lipofectamine that primarily internalizes and transfects endothelial cells, RV-like NPs are capable to travel across the BBB, preferentially internalize glioblastoma cells and deliver at an efficiency of 10 % causing non-cytotoxic effects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10234607PMC
http://dx.doi.org/10.1021/acsanm.3c00651DOI Listing

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