Isaac Francos-Quijorna, BSc
Affiliations: | Universitat Autònoma de Barcelona, Barcelona, Spain |
Area:
Spinal Cord InjuryGoogle:
"Isaac Francos-Quijorna"Mean distance: 19.15 (cluster 11) | S | N | B | C | P |
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Publications
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Ryan F, Francos-Quijorna I, Hernández-Mir G, et al. (2024) Deletion Modulates Cytokine and Extracellular Matrix Expression in Chronic Spinal Cord Injury, Leading to Improved Secondary Damage and Functional Recovery. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 44 |
Francos-Quijorna I, Sánchez-Petidier M, Burnside ER, et al. (2022) Chondroitin sulfate proteoglycans prevent immune cell phenotypic conversion and inflammation resolution via TLR4 in rodent models of spinal cord injury. Nature Communications. 13: 2933 |
Amo-Aparicio J, Garcia-Garcia J, Francos-Quijorna I, et al. (2021) Interleukin-4 and interleukin-13 induce different metabolic profiles in microglia and macrophages that relate with divergent outcomes after spinal cord injury. Theranostics. 11: 9805-9820 |
Mòdol-Caballero G, Herrando-Grabulosa M, Verdés S, et al. (2021) Gene Therapy Overexpressing Neuregulin 1 Type I in Combination With Neuregulin 1 Type III Promotes Functional Improvement in the SOD1 ALS Mice. Frontiers in Neurology. 12: 693309 |
Amo-Aparicio J, Garcia-Garcia J, Puigdomenech M, et al. (2021) Inhibition of the NLRP3 inflammasome by OLT1177 induces functional protection and myelin preservation after spinal cord injury. Experimental Neurology. 347: 113889 |
Hernández J, Francos-Quijorna I, Redondo-Castro E, et al. (2021) Microglia Stimulation by Protein Extract of Injured Rat Spinal Cord. A Novel Model for Studying Activated Microglia. Frontiers in Molecular Neuroscience. 14: 582497 |
Mòdol-Caballero G, Herrando-Grabulosa M, García-Lareu B, et al. (2020) Gene therapy for overexpressing Neuregulin 1 type I in skeletal muscles promotes functional improvement in the SOD1 ALS mice. Neurobiology of Disease. 104793 |
López-Serrano C, Santos-Nogueira E, Francos-Quijorna I, et al. (2018) Lysophosphatidic acid receptor type 2 activation contributes to secondary damage after spinal cord injury in mice. Brain, Behavior, and Immunity |
Francos-Quijorna I, Amo-Aparicio J, Martinez-Muriana A, et al. (2016) IL-4 drives microglia and macrophages toward a phenotype conducive for tissue repair and functional recovery after spinal cord injury. Glia |
Martínez-Muriana A, Mancuso R, Francos-Quijorna I, et al. (2016) CSF1R blockade slows the progression of amyotrophic lateral sclerosis by reducing microgliosis and invasion of macrophages into peripheral nerves. Scientific Reports. 6: 25663 |