Area of research
Physiology · Cellular and Molecular Neuroscience
Research interest
Research interests include Pain Mechanisms and Treatments, Neuropeptides and Animal Physiology, Nerve injury and regeneration, and Neuroscience and Neuropharmacology Research.
How microglia contribute to the induction and maintenance of neuropathic pain
Activation of proresolving macrophages in dorsal root ganglia attenuates persistent arthritis pain
Molecular Determinants of Neutrophil Extracellular Vesicles That Drive Cartilage Regeneration in Inflammatory Arthritis
Silencing miR-21-5p in sensory neurons reverses neuropathic allodynia via activation of TGF-β–related pathway in macrophages
Microglia states and nomenclature: A field at its crossroads
Dorsal root ganglia CX3CR1 expressing monocytes/macrophages contribute to arthritis pain
Changes in blood–spinal cord barrier permeability and neuroimmune interactions in the underlying mechanisms of chronic pain
Microglial heterogeneity in chronic pain
Fractalkine/CX3CR1 Pathway in Neuropathic Pain: An Update
Imbalance of proresolving lipid mediators in persistent allodynia dissociated from signs of clinical arthritis
Pain in the neurodegenerating brain: insights into pharmacotherapy for Alzheimer disease and Parkinson disease
Role of the immune system in neuropathic pain
Pain in Parkinson's disease: new concepts in pathogenesis and treatment
Changes in vascular permeability in the spinal cord contribute to chemotherapy-induced neuropathic pain
Cathepsin S acts via protease-activated receptor 2 to activate sensory neurons and induce itch-like behaviour
A novel interaction between CX3CR1 and CCR2 signalling in monocytes constitutes an underlying mechanism for persistent vincristine-induced pain
Exosomal cargo including microRNA regulates sensory neuron to macrophage communication after nerve trauma
Role of TrkA signalling and mast cells in the initiation of osteoarthritis pain in the monoiodoacetate model
Inflammatory pain control by blocking oxidized phospholipid-mediated TRP channel activation
The Therapeutic Potential of Monocyte/Macrophage Manipulation in the Treatment of Chemotherapy-Induced Painful Neuropathy
The Monoiodoacetate Model of Osteoarthritis Pain in the Mouse
Neuron-immune mechanisms contribute to pain in early stages of arthritis
The Monoiodoacetate Model of Osteoarthritis Pain in the Mouse
Environmental cold exposure increases blood flow and affects pain sensitivity in the knee joints of CFA-induced arthritic mice in a TRPA1-dependent manner
The therapeutic potential of targeting chemokine signalling in the treatment of chronic pain
Selective Cathepsin S Inhibition with MIV-247 Attenuates Mechanical Allodynia and Enhances the Antiallodynic Effects of Gabapentin and Pregabalin in a Mouse Model of Neuropathic Pain
Reduced thermal sensitivity and increased opioidergic tone in the TASTPM mouse model of Alzheimer's disease
The Role of Glia in the Spinal Cord in Neuropathic and Inflammatory Pain
Selective Activation of Microglia Facilitates Synaptic Strength