| Literature DB >> 35571675 |
Trevor Krolak1, Ken Y Chan2, Luke Kaplan1, Qin Huang2, Jason Wu2, Qingxia Zheng2, Velina Kozareva2, Thomas Beddow2, Isabelle G Tobey2, Simon Pacouret2, Albert T Chen2, Yujia A Chan2, Daniel Ryvkin1, Chenghua Gu1, Benjamin E Deverman2.
Abstract
Endothelial cells have a crucial role in nervous system function, and mounting evidence points to endothelial impairment as a major contributor to a wide range of neurological diseases. However, tools to genetically interrogate these cells in vivo remain limited. Here, we describe AAV-BI30, a capsid that specifically and efficiently transduces endothelial cells throughout the central nervous system. At relatively low systemic doses, this vector transduces the majority of arterial, capillary, and venous endothelial cells in the brain, retina, and spinal cord vasculature of adult C57BL/6 mice. Furthermore, we show that AAV-BI30 robustly transduces endothelial cells in multiple mouse strains and rats in vivo and human brain microvascular endothelial cells in vitro. Finally, we demonstrate AAV-BI30's capacity to achieve efficient and endothelial-specific Cre-mediated gene manipulation in the central nervous system. This combination of attributes makes AAV-BI30 uniquely well-suited to address outstanding research questions in neurovascular biology and aid the development of therapeutics to remediate endothelial dysfunction in disease.Entities:
Year: 2022 PMID: 35571675 PMCID: PMC9103166 DOI: 10.1038/s44161-022-00046-4
Source DB: PubMed Journal: Nat Cardiovasc Res ISSN: 2731-0590