Spatiotemporally Confined Red Light-Controlled Gene Delivery at Single-Cell Resolution Using Adeno-Associated Viral Vectors | AIChE

Spatiotemporally Confined Red Light-Controlled Gene Delivery at Single-Cell Resolution Using Adeno-Associated Viral Vectors

Authors 

Hörner, M. - Presenter, University of Freiburg, CIBSS
Jerez-Longres, C., University of Freiburg
Hudek, A., University of Freiburg
Hook, S., Hannover Medical School
Yousefi, O. S., University of Freiburg
Schamel, W. W. A., University of Freiburg
Hörner, C., Paul-Ehrlich-Institut
Zurbriggen, M., University of Freiburg
Ye, H., East China Normal University
Wagner, H. J., University of Freiburg
Weber, W., SGBM – Spemann Graduate School of Biology and Medicine, University of Freiburg

Methodologies for the controlled delivery of genetic information into target cells are of utmost importance for genetic engineering in both fundamental and applied research. However, available methods for efficient gene transfer into user-selected or even single cells suffer from low throughput, the need for complicated equipment, high invasiveness, or side effects by off-target viral uptake. To overcome these limitations, we engineered an adeno-associated viral (AAV) vector system that transfers genetic information into native target cells upon illumination with cell-compatible red light. This OptoAAV system allows adjustable and spatially resolved gene transfer down to single-cell resolution and is compatible with different cell lines as well as primary cells. Moreover, the sequential application of multiple OptoAAVs enables spatially resolved transduction with different transgenes. The approach presented is likely extendable to other classes of viral vectors and is expected to foster advances in basic and applied genetic research.