Impairment of autophagy after spinal cord injury potentiates neuroinflammation and motor function deficit in mice is a research paper published in Theranostics (2022). On theSindex it has a DataRank of 0. It has been cited 120 times.
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NINDS NIH HHS
Grant: R01 NS110825
NINDS NIH HHS
Grant: R01 NS094527
NINDS NIH HHS
Grant: R01 NS110635
NINDS NIH HHS
Grant: R01 NS115876
NINDS NIH HHS
Grant: RF1 NS110637
NINDS NIH HHS
Grant: RF1 NS094527
FWCI
14.31
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 1 of Micro electrical fields induced MSC-sEVs attenuate neuronal cell apoptosis by activating autophagy via lncRNA MALAT1/miR-22-3p/SIRT1/AMPK axis in spinal cord injury
Additional file 1 of Micro electrical fields induced MSC-sEVs attenuate neuronal cell apoptosis by activating autophagy via lncRNA MALAT1/miR-22-3p/SIRT1/AMPK axis in spinal cord injury
Additional file 2 of Micro electrical fields induced MSC-sEVs attenuate neuronal cell apoptosis by activating autophagy via lncRNA MALAT1/miR-22-3p/SIRT1/AMPK axis in spinal cord injury
Additional file 2 of Micro electrical fields induced MSC-sEVs attenuate neuronal cell apoptosis by activating autophagy via lncRNA MALAT1/miR-22-3p/SIRT1/AMPK axis in spinal cord injury
Additional file 1 of IPSC-NSCs-derived exosomal let-7b-5p improves motor function after spinal cord Injury by modulating microglial/macrophage pyroptosis
Additional file 1 of IPSC-NSCs-derived exosomal let-7b-5p improves motor function after spinal cord Injury by modulating microglial/macrophage pyroptosis