Therapeutic modulation of the blood-brain barrier and ischemic stroke by a bioengineered FZD4-selective WNT surrogate
Ding, J.; Lee, S.-J.; Vlahos, L.; Yuki, K.; Rada, C.; van Unen, V.; Vuppalapaty, M.; Chen, H.; Sura, A.; McCormick, A.; Tomaske, M.; Alwahabi, S.; Nguyen, H.; Nowatzke, W.; Kim, L.; Kelly, L.; Vollrath, D.; Califano, A.; Yeh, W.-C.; Li, Y.; Kuo, C.
Show abstract
Derangements of the blood-brain barrier (BBB) or blood-retinal barrier (BRB) occur in disorders ranging from stroke, cancer, diabetic retinopathy, and Alzheimers disease. The Norrin/FZD4/TSPAN12 pathway activates WNT/{beta}-catenin signaling, which is essential for BBB and BRB function. However, systemic pharmacologic FZD4 stimulation is hindered by obligate palmitoylation and insolubility of native WNTs and suboptimal properties of the FZD4-selective ligand Norrin. Here, we developed L6-F4-2, a non-lipidated, FZD4-specific surrogate with significantly improved sub-picomolar affinity versus native Norrin. In Norrin knockout (NdpKO) mice, L6-F4-2 not only potently reversed neonatal retinal angiogenesis deficits, but also restored BRB and BBB function. In adult C57Bl/6J mice, post-stroke systemic delivery of L6-F4-2 strongly reduced BBB permeability, infarction, and edema, while improving neurologic score and capillary pericyte coverage. Our findings reveal systemic efficacy of a bioengineered FZD4-selective WNT surrogate during ischemic BBB dysfunction, with general applicability to adult CNS disorders characterized by an aberrant blood-brain barrier.
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