Area of research
Immunology · Neurology
Research interest
Research interests include Biology, Immunology, Cell biology, Experimental autoimmune encephalomyelitis, Immune system, and Autoimmunity.
An efficient, non-viral arrayed CRISPR screening platform for iPSC-derived myeloid and microglia models
AKT activity orchestrates marginal zone B cell development in mice and humans
IL-17 Signaling in Keratinocytes Orchestrates the Defense against Staphylococcus aureus Skin Infection
IL-17 controls central nervous system autoimmunity through the intestinal microbiome
Posttranslational modifications by ADAM10 shape myeloid antigen-presenting cell homeostasis in the splenic marginal zone
Interleukin-1 promotes autoimmune neuroinflammation by suppressing endothelial heme oxygenase-1 at the blood–brain barrier
Dietary tryptophan links encephalogenicity of autoreactive T cells with gut microbial ecology
Regulation of IL-22BP in psoriasis
Alternative Splice Forms of CYLD Mediate Ubiquitination of SMAD7 to Prevent TGFB Signaling and Promote Colitis
EBI2 in splenic and local immune responses and in autoimmunity
Expression of IL-17F is associated with non-pathogenic Th17 cells
NF-κB inducing kinase (NIK) is an essential post-transcriptional regulator of T-cell activation affecting F-actin dynamics and TCR signaling
EBI2 – Sensor for dihydroxycholesterol gradients in neuroinflammation
EBI2 Is Highly Expressed in Multiple Sclerosis Lesions and Promotes Early CNS Migration of Encephalitogenic CD4 T Cells
TGF-β inhibitor Smad7 regulates dendritic cell-induced autoimmunity
Single-cell profiling reveals GPCR heterogeneity and functional patterning during neuroinflammation
IL‐1 signaling is critical for expansion but not generation of autoreactive GM‐CSF+ Th17 cells
Improved method to retain cytosolic reporter protein fluorescence while staining for nuclear proteins
Dietary tryptophan is required for CNS infiltration of encephalitogenic T cells
Subclinical CNS Inflammation as Response to a Myelin Antigen in Humanized Mice