In vivo real-time multiphoton imaging of T lymphocytes in the mouse brain after experimental stroke

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Abstract

BACKGROUND AND PURPOSE-To gain a better understanding of T cell behavior after stroke, we have developed real-time in vivo brain imaging of T cells by multiphoton microscopy after middle cerebral artery occlusion. METHODS-Adult male hCD2-GFP transgenic mice that exhibit green fluorescent protein-labeled T cells underwent permanent left distal middle cerebral artery occlusion by electrocoagulation (n=6) or sham surgery (n=6) and then multiphoton laser imaging 72 hours later. RESULTS-Extravasated T cell number significantly increased after middle cerebral artery occlusion versus sham. Two T cell populations existed after middle cerebral artery occlusion, possibly driven by 2 T cell subpopulations; 1 had significantly lower and the other significantly higher track velocity and displacement rate than sham. CONCLUSIONS-The different motilities and behaviors of T cells observed using our imaging approach after stroke could reveal important mechanisms of immune surveillance for future therapeutic exploitations. © 2011 American Heart Association, Inc.

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Fumagalli, S., Coles, J. A., Ejlerskov, P., Ortolano, F., Bushell, T. J., Brewer, J. M., … Carswell, H. V. (2011). In vivo real-time multiphoton imaging of T lymphocytes in the mouse brain after experimental stroke. Stroke, 42(5), 1429–1436. https://doi.org/10.1161/STROKEAHA.110.603704

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