Area of research
Physiology · Cellular and Molecular Neuroscience
Research interest
Research interests include Pain Mechanisms and Treatments, Neuropeptides and Animal Physiology, Ion Channels and Receptors, and Rheumatoid Arthritis Research and Therapies.
A subset of antibodies targeting citrullinated proteins confers protection from rheumatoid arthritis
CD163+ macrophages monitor enhanced permeability at the blood–dorsal root ganglion barrier
Anti-satellite glia cell IgG antibodies in fibromyalgia patients are related to symptom severity and to metabolite concentrations in thalamus and rostral anterior cingulate cortex
Insights into FcγR involvement in pain-like behavior induced by an RA-derived anti-modified protein autoantibody
Passive transfer of fibromyalgia symptoms from patients to mice
Disrupted function of lactate transporter <scp>MCT1</scp>, but not <scp>MCT4</scp>, in Schwann cells affects the maintenance of motor end‐plate innervation
Cartilage-binding antibodies induce pain through immune complex–mediated activation of neurons
Oxidative hotspots on actin promote skeletal muscle weakness in rheumatoid arthritis
Exploring the transcriptome of resident spinal microglia after collagen antibody–induced arthritis
Cardiomyopathy, oxidative stress and impaired contractility in a rheumatoid arthritis mouse model
Autoantibodies to citrullinated proteins induce joint pain independent of inflammation via a chemokine-dependent mechanism
Collagen antibody–induced arthritis evokes persistent pain with spinal glial involvement and transient prostaglandin dependency