Area of research
Physiology · Epidemiology
Research interest
Research focused on PIEZO1 and Inflammation, with related work in Mechanotransduction, Cell biology, Microglia. Notable publications include 'Piezo1 Channels as Force Sensors in Mechanical Force-Related Chronic Inflammation', 'Inhibiting the Piezo1 channel protects microglia from acute hyperglycaemia damage through the JNK1 and mTOR signalling pathways', and 'Mechanical properties of the brain: Focus on the essential role of Piezo1‐mediated mechanotransduction in the CNS'.
Dexamethasone upregulates macrophage PIEZO1 via SGK1, suppressing inflammation and increasing ROS and apoptosis
Contrasting effects of short- and long-term grazing exclusion on plant diversity in humid grasslands
Association between human blood metabolome and the risk of delirium: a Mendelian Randomization study
PIEZO1 as a new target for hyperglycemic stress-induced neuropathic injury: The potential therapeutic role of bezafibrate
Mechanical properties of the brain: Focus on the essential role of Piezo1‐mediated mechanotransduction in the CNS
Piezo1 Channels as Force Sensors in Mechanical Force-Related Chronic Inflammation
Surgical treatment of a patient with live intracranial sparganosis for 17 years
Inhibiting the Piezo1 channel protects microglia from acute hyperglycaemia damage through the JNK1 and mTOR signalling pathways
Research on Computer Aided Computation of Infectious Disease SIR Model Algorithm Based on Parameter Control