Daniel Mordes
            
            @mordeslab.bsky.social
          
          22 followers
          39 following
          4 posts
        
          Neuropathologist and Investigator at the Institute for Neurodegenerative Diseases and Weill Institute for Neurosciences at UCSF; aspiring coffee connoisseur 
      
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              Daniel Mordes
              @mordeslab.bsky.social
          
              · Jun 5
        
        
        
            Autophagy, aging, and age-related neurodegeneration
            This review discusses the links between the autophagy pathway, aging, and age-associated
neurodegeneration in Alzheimer’s, Parkinson’s, motor neuron, and Huntington’s diseases.
The authors highlight t...
          
            
            www.cell.com
          
        
      
    
        
      Reposted by Daniel Mordes
    
  
          
              Beth Stevens
              @bethstevenslab.bsky.social
          
              · Apr 28
        
        
          
       How does the brain repair myelin after injury?
We mapped the full cellular choreography of white matter repair using snRNA-seq + Slide-seqv2, uncovering a type I interferon-driven glial program that recruits lymphocytes to promote remyelination.
www.biorxiv.org/content/10.1...
Details below 👇
      
          We mapped the full cellular choreography of white matter repair using snRNA-seq + Slide-seqv2, uncovering a type I interferon-driven glial program that recruits lymphocytes to promote remyelination.
www.biorxiv.org/content/10.1...
Details below 👇
Spatiotemporal Analysis of Remyelination Reveals a Concerted Interferon-Responsive Glial State That Coordinates Immune Infiltration
          Remyelination, the process by which axons are re-encased in myelin after injury, is a critical step in restoring brain function, yet the dynamics from initial injury to repair remain poorly characteri...
        
          
          www.biorxiv.org
        
      
  
        
      Reposted by Daniel Mordes
    
  
          
              Daniel Mordes
              @mordeslab.bsky.social
          
              · Mar 27
        
        
      
    
          
              Daniel Mordes
              @mordeslab.bsky.social
          
              · Mar 27
        
        
        
            C9ORF72 poly-PR disrupts expression of ALS/FTD-implicated STMN2 through SRSF7 - Acta Neuropathologica Communications
            A hexanucleotide repeat expansion in C9ORF72 is the most common genetic cause of amyotrophic lateral sclerosis (ALS), frontotemporal dementia (FTD), and combined ALS/FTD. The repeat is transcribed in ...
          
            
            actaneurocomms.biomedcentral.com