Stephen M. Strittmatter
Affiliations: | Yale University, New Haven, CT |
Area:
Axon Guidance, RegenerationGoogle:
"Stephen Strittmatter"Mean distance: 13.03 (cluster 11) | S | N | B | C | P |
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Publications
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Shafit-Zagardo B, Sidoli S, Goldman JE, et al. (2023) TMEM106B Puncta Is Increased in Multiple Sclerosis Plaques, and Reduced Protein in Mice Results in Delayed Lipid Clearance Following CNS Injury. Cells. 12 |
Ye S, Theotokis P, Lee JY, et al. (2023) Nogo receptor-Fc delivered by haematopoietic cells enhances neurorepair in a multiple sclerosis model. Brain Communications. 5: fcad108 |
Brody AH, Nies SH, Guan F, et al. (2022) Correction: Alzheimer risk gene product Pyk2 suppresses tau phosphorylation and phenotypic effects of tauopathy. Molecular Neurodegeneration. 17: 56 |
Spurrier J, Nicholson L, Fang XT, et al. (2022) Reversal of synapse loss in Alzheimer mouse models by targeting mGluR5 to prevent synaptic tagging by C1Q. Science Translational Medicine. 14: eabi8593 |
Brody AH, Nies SH, Guan F, et al. (2022) Alzheimer risk gene product Pyk2 suppresses tau phosphorylation and phenotypic effects of tauopathy. Molecular Neurodegeneration. 17: 32 |
Sekine Y, Kannan R, Wang X, et al. (2022) Rabphilin3A reduces integrin-dependent growth cone signaling to restrict axon regeneration after trauma. Experimental Neurology. 353: 114070 |
Toyonaga T, Fesharaki-Zadeh A, Strittmatter SM, et al. (2022) PET Imaging of Synaptic Density: Challenges and Opportunities of Synaptic Vesicle Glycoprotein 2A PET in Small Animal Imaging. Frontiers in Neuroscience. 16: 787404 |
Chiasseu M, Fesharaki A, Saito T, et al. (2020) Gene-environment interaction promotes Alzheimer's risk as revealed by synergy of repeated mild traumatic brain injury and mouse App knock-in. Neurobiology of Disease. 145: 105059 |
Tang SJ, Fesharaki-Zadeh A, Takahashi H, et al. (2020) Fyn kinase inhibition reduces protein aggregation, increases synapse density and improves memory in transgenic and traumatic Tauopathy. Acta Neuropathologica Communications. 8: 96 |
Wang X, Zhou T, Maynard GD, et al. (2020) Nogo receptor decoy promotes recovery and corticospinal growth in non-human primate spinal cord injury. Brain : a Journal of Neurology |