Cell-mediated cytotoxicity within CSF and brain parenchyma in spinal muscular atrophy unaltered by nusinersen treatment.
I-Na LuPhyllis Fung-Yi CheungMichael HemingChristian ThomasGiovanni GiglioMarkus LeoMerve ErdemirTimo WirthSimone KönigChristine A DambietzChristina B SchroeterChristopher NelkeJens Thomas SivekeTobias RuckLuisa KlotzCarmen HaiderRomana HöftbergerChristoph KleinschnitzHeinz WiendlTim HagenackerGerd Meyer Zu HörstePublished in: Nature communications (2024)
5q-associated spinal muscular atrophy (SMA) is a motoneuron disease caused by mutations in the survival motor neuron 1 (SMN1) gene. Adaptive immunity may contribute to SMA as described in other motoneuron diseases, yet mechanisms remain elusive. Nusinersen, an antisense treatment, enhances SMN2 expression, benefiting SMA patients. Here we have longitudinally investigated SMA and nusinersen effects on local immune responses in the cerebrospinal fluid (CSF) - a surrogate of central nervous system parenchyma. Single-cell transcriptomics (SMA: N = 9 versus Control: N = 9) reveal NK cell and CD8+ T cell expansions in untreated SMA CSF, exhibiting activation and degranulation markers. Spatial transcriptomics coupled with multiplex immunohistochemistry elucidate cytotoxicity near chromatolytic motoneurons (N = 4). Post-nusinersen treatment, CSF shows unaltered protein/transcriptional profiles. These findings underscore cytotoxicity's role in SMA pathogenesis and propose it as a therapeutic target. Our study illuminates cell-mediated cytotoxicity as shared features across motoneuron diseases, suggesting broader implications.
Keyphrases
- single cell
- cerebrospinal fluid
- rna seq
- immune response
- high throughput
- end stage renal disease
- poor prognosis
- chronic kidney disease
- gene expression
- cell therapy
- genome wide
- ejection fraction
- oxidative stress
- newly diagnosed
- mesenchymal stem cells
- bone marrow
- mass spectrometry
- brain injury
- binding protein
- inflammatory response
- dendritic cells
- patient reported
- protein protein
- resting state
- blood brain barrier
- high speed
- atomic force microscopy
- nucleic acid