Intranasal delivery of caspase-9 inhibitor reduces caspase-6-dependent axon/neuron loss and improves neurological function after stroke

鼻腔内给药 caspase-9 抑制剂可减少 caspase-6 依赖性轴突/神经元丢失并改善中风后的神经功能

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作者:Nsikan Akpan, Esther Serrano-Saiz, Brad E Zacharia, Marc L Otten, Andrew F Ducruet, Scott J Snipas, Wen Liu, Jennifer Velloza, Greg Cohen, Sergeyi A Sosunov, William H Frey 2nd, Guy S Salvesen, E Sander Connolly Jr, Carol M Troy

Abstract

Despite extensive research to develop an effective neuroprotective strategy for the treatment of ischemic stroke, therapeutic options remain limited. Although caspase-dependent death is thought to play a prominent role in neuronal injury, direct evidence of active initiator caspases in stroke and the functional relevance of this activity have not previously been shown. Using an unbiased caspase-trapping technique in vivo, we isolated active caspase-9 from ischemic rat brain within 1 h of reperfusion. Pathogenic relevance of active caspase-9 was shown by intranasal delivery of a novel cell membrane-penetrating highly specific inhibitor for active caspase-9 at 4 h postreperfusion (hpr). Caspase-9 inhibition provided neurofunctional protection and established caspase-6 as its downstream target. The temporal and spatial pattern of expression demonstrates that neuronal caspase-9 activity induces caspase-6 activation, mediating axonal loss by 12 hpr followed by neuronal death within 24 hpr. Collectively, these results support selective inhibition of these specific caspases as an effective therapeutic strategy for stroke.

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