Area of research
Neurology · Molecular Biology
Research interest
Research interests include Gut microbiota and health, Alzheimer's disease research and treatments, Parkinson's Disease Mechanisms and Treatments, and Neuroinflammation and Neurodegeneration Mechanisms.
The gut microbiome controls reactive astrocytosis during Aβ amyloidosis via propionate-mediated regulation of IL-17
Sodium oligomannate alters gut microbiota, reduces cerebral amyloidosis and reactive microglia in a sex-specific manner
ApoE isoform– and microbiota-dependent progression of neurodegeneration in a mouse model of tauopathy
The gut microbiome regulates astrocyte reaction to Aβ amyloidosis through microglial dependent and independent mechanisms
Increased Type I interferon signaling and brain endothelial barrier dysfunction in an experimental model of Alzheimer’s disease
Gut microbiota–driven brain Aβ amyloidosis in mice requires microglia
Synergistic depletion of gut microbial consortia, but not individual antibiotics, reduces amyloidosis in APPPS1-21 Alzheimer’s transgenic mice
Future of Probiotics and Prebiotics and the Implications for Early Career Researchers
Sex-specific effects of microbiome perturbations on cerebral Aβ amyloidosis and microglia phenotypes
Role of TLR4 in the gut-brain axis in Parkinson’s disease: a translational study from men to mice
Chronic stress-induced gut dysfunction exacerbates Parkinson's disease phenotype and pathology in a rotenone-induced mouse model of Parkinson's disease
Gut bacterial composition in a mouse model of Parkinson’s disease
The gut-brain axis in Parkinson's disease: Possibilities for food-based therapies
Gut–brain and brain–gut axis in Parkinson's disease models: Effects of a uridine and fish oil diet
The Potential Role of Gut-Derived Inflammation in Multiple System Atrophy
Alcohol Feeding in Mice Promotes Colonic Hyperpermeability and Changes in Colonic Organoid Stem Cell Fate
Disease duration and the integrity of the nigrostriatal system in Parkinson’s disease