Area of research
Cellular and Molecular Neuroscience · Cell Biology
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Cellular transport and secretion, Alzheimer's disease research and treatments, and Retinal Development and Disorders.
Intracortical bipolar stimulation allows selective activation of neuronal populations in the cortex
MyeliMAP: Studying Oligodendrocyte Function in Brain Networks
Accumulation of APP C-terminal fragments causes endolysosomal dysfunction through the dysregulation of late endosome to lysosome-ER contact sites
Protocol to process fresh human cerebral cortex biopsies for patch-clamp recording and immunostaining
Mitochondria metabolism sets the species-specific tempo of neuronal development
<i>Helicobacter pylori</i>‐derived outer membrane vesicles contribute to Alzheimer's disease pathogenesis via C3‐C3aR signalling
Early alterations in the MCH system link aberrant neuronal activity and sleep disturbances in a mouse model of Alzheimer’s disease
LRRC37B is a human modifier of voltage-gated sodium channels and axon excitability in cortical neurons
Astrocyte-targeted gene delivery of interleukin 2 specifically increases brain-resident regulatory T cell numbers and protects against pathological neuroinflammation
DJ-1 is an essential downstream mediator in PINK1/parkin-dependent mitophagy
AAV‐mediated delivery of an anti‐BACE1 VHH alleviates pathology in an Alzheimer's disease model
Lowering Synaptogyrin-3 expression rescues Tau-induced memory defects and synaptic loss in the presence of microglial activation
SOX9-induced Generation of Functional Astrocytes Supporting Neuronal Maturation in an All-human System
Corticotropin-Releasing Factor Induces Functional And Structural Synaptic Remodelling In Acute Stress
Synapse type-specific proteomic dissection identifies IgSF8 as a hippocampal CA3 microcircuit organizer
Mapping the cell-surface proteome underlying hippocampal mossy fiber synapse identity
Generation of a human induced pluripotent stem cell–based model for tauopathies combining three microtubule‐associated protein TAU mutations which displays several phenotypes linked to neurodegeneration
Tau association with synaptic vesicles causes presynaptic dysfunction
The Sorting Receptor SorCS1 Regulates Trafficking of Neurexin and AMPA Receptors