Comparative analysis of microglia-targeted AAVs reveals capsid choice drives efficiency in vitro but has limited impact in vivo
Jereb, S.; DAlessandro, L. R.; Morshed, N.; Chen, M.; Sartore, R.; Han, Z.; McKinney, J. E.; Brauer, P. P.; Harvey, J. W.; Demers, M.; Cuffe, D.; Rakosi-Schmidt, R.; Leite, L.; Huang, Y.; Zheng, Q.; Lin, C.-Y. L.; Chan, K. Y.; Song, B. J.; Farzan, M. R.; Arlotta, P.; Sheng, M.; Bennett, M. L.; Johnson, M. B.; Stevens, B.; Deverman, B. E.
Show abstract
Microglia play key roles in brain development, homeostasis, and neurodegeneration. Although multiple strategies for viral gene delivery to microglia have been reported, they have not been directly compared. Here, we developed microglia-targeting AAV capsids and benchmarked them against existing approaches. The novel capsids exhibit improved transduction efficiency in cultured mouse and human microglia, as well as neurons and astrocytes. However, when we compared microglial transduction efficiency of the novel capsids with published engineered and naturally occurring capsids after intracranial injection, all capsids achieved efficient and specific transduction when paired with a genome incorporating IBA1 promoter and miR-124 target sites. In contrast, CAG promoter did not support efficient microglial transduction. Moreover, blood-brain barrier- crossing capsids carrying IBA1 promoter and miR-124 target sites efficiently transduced microglia at high doses but exhibited off-target expression. Together, our work provides improved capsids for in vitro manipulation of microglia and establishes viral genome design, not capsid identity, as the principal determinant of efficient in vivo microglial targeting.
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