Area of research
Sensory Systems · Physiology
Research interest
Research interests include Transient receptor potential channel, Chemistry, TRPV1, Nociceptor, Medicine, and Nociception.
Nociceptive Processing of Elite Athletes Varies between Sport-Specific Loads: An EEG-Based Study Approach
The formalin test does not probe inflammatory pain but excitotoxicity in rodent skin
EEG-based sensory testing reveals altered nociceptive processing in elite endurance athletes
Th2 Modulation of Transient Receptor Potential Channels: An Unmet Therapeutic Intervention for Atopic Dermatitis
Proton-Sensing GPCRs in Health and Disease
A group of cationic amphiphilic drugs activates MRGPRX2 and induces scratching behavior in mice
New mechanism underlying IL-31–induced atopic dermatitis
Sensitization of TRPA1 by Protein Kinase A
Agonist‐induced sensitisation of the irritant receptor ion channel TRPA1
H2S and NO cooperatively regulate vascular tone by activating a neuroendocrine HNO–TRPA1–CGRP signalling pathway
Direct evidence for functional TRPV1/TRPA1 heteromers
Stimulation of GLP-1 Secretion Downstream of the Ligand-Gated Ion Channel TRPA1
The Molecular Basis for Species-specific Activation of Human TRPA1 Protein by Protons Involves Poorly Conserved Residues within Transmembrane Domains 5 and 6
Methylglyoxal Activates Nociceptors through Transient Receptor Potential Channel A1 (TRPA1)
5,6-EET Is Released upon Neuronal Activity and Induces Mechanical Pain Hypersensitivity via TRPA1 on Central Afferent Terminals