AUTHOR=Pinto-Espinoza Carolina , Guillou Charlotte , Rissiek Björn , Wilmes Maximilian , Javidi Ehsan , Schwarz Nicole , Junge Marten , Haag Friedrich , Liaukouskaya Nastassia , Wanner Nicola , Nicke Annette , Stortelers Catelijne , Tan Yossan-Var , Adriouch Sahil , Magnus Tim , Koch-Nolte Friedrich TITLE=Effective targeting of microglial P2X7 following intracerebroventricular delivery of nanobodies and nanobody-encoding AAVs JOURNAL=Frontiers in Pharmacology VOLUME=13 YEAR=2022 URL=https://www.frontiersin.org/journals/pharmacology/articles/10.3389/fphar.2022.1029236 DOI=10.3389/fphar.2022.1029236 ISSN=1663-9812 ABSTRACT=
The P2X7 ion channel is a key sensor for extracellular ATP and a key trigger of sterile inflammation. Intravenous injection of nanobodies that block P2X7 has shown to be beneficial in mouse models of systemic inflammation. P2X7 has also emerged as an attractive therapeutic target for inflammatory brain diseases. However, little is known about the ability of nanobodies to cross the BBB. Here we evaluated the ability of P2X7-specific nanobodies to reach and to block P2X7 on microglia following intravenous or intracerebral administration. For this study, we reformatted and sequence-optimized P2X7 nanobodies for higher stability and elevated isoelectric point. Following injection of nanobodies or nanobody-encoding adeno-associated viral vectors (AAV), we monitored the occupancy and blockade of microglial P2X7