Area of research
Neurology · Physiology
Research interest
Research interests include Biology, Neuroscience, Microglia, Inflammation, Medicine, and Internal medicine.
Modeling neuroinflammatory interactions between microglia and astrocytes in a human iPSC-based coculture platform
ciRS-7 and miR-7 regulate ischemia-induced neuronal death via glutamatergic signaling
Emerging Models to Study Human Microglia In vitro
Early Alzheimer’s disease pathology in human cortex involves transient cell states
Dynamic release of neuronal extracellular vesicles containing miR‐21a‐5p is induced by hypoxia
Microglia states and nomenclature: A field at its crossroads
High Soluble Amyloid-β42 Predicts Normal Cognition in Amyloid-Positive Individuals with Alzheimer’s Disease-Causing Mutations
Metabolomic, Lipidomic and Proteomic Characterisation of Lipopolysaccharide-induced Inflammation Mouse Model
Increased Expression and Activity of Brain Cortical cPLA2 Due to Chronic Lipopolysaccharide Administration in Mouse Model of Familial Alzheimer’s Disease
High cerebrospinal amyloid-β 42 is associated with normal cognition in individuals with brain amyloidosis
Systemic Inflammation Induced Changes in Protein Expression of ABC Transporters and Ionotropic Glutamate Receptor Subunit 1 in the Cerebral Cortex of Familial Alzheimer`s Disease Mouse Model
Hypoxia and extracellular vesicles: A review on methods, vesicular cargo and functions
Clearance of interstitial fluid (ISF) and CSF (CLIC) group—part of Vascular Professional Interest Area (PIA)
Peripheral inflammation preceeding ischemia impairs neuronal survival through mechanisms involving miR‐127 in aged animals
The viral protein corona directs viral pathogenesis and amyloid aggregation
PSEN1ΔE9, APPswe, and APOE4 Confer Disparate Phenotypes in Human iPSC-Derived Microglia
Loss of Cln5 leads to altered Gad1 expression and deficits in interneuron development in mice