Protein tyrosine phosphatase receptor δ serves as the orexigenic asprosin receptor Publication: Journal Article “Protein Tyrosine Phosphatase Receptor δ Serves As the Orexigenic Asprosin Receptor”. 2022. Cell Metabolism.
The ventromedial hypothalamic nucleus: watchdog of whole-body glucose homeostasis Publication: Journal Article “The Ventromedial Hypothalamic Nucleus: Watchdog of Whole-Body Glucose Homeostasis”. 2022. Cell & Bioscience.
Defining VDR expression in the brain using a novel VDRCre mouse Publication: Journal Article “Defining VDR Expression in the Brain Using a Novel VDRCre Mouse”. 2021. Journal of Comparative Neurology.
Hypothalamic steroid receptor coactivator-2 regulates adaptations to fasting and overnutrition Publication: Journal Article “Hypothalamic Steroid Receptor Coactivator-2 Regulates Adaptations to Fasting and Overnutrition”. 2021. Cell Reports.
Melanocortin 4 receptor is not required for estrogenic regulations on energy homeostasis and reproduction Publication: Journal Article “Melanocortin 4 Receptor Is Not Required for Estrogenic Regulations on Energy Homeostasis and Reproduction”. 2017. Metabolism.
Asprosin is a centrally-acting orexigenic hormone Publication: Journal Article “Asprosin Is a Centrally-Acting Orexigenic Hormone”. 2017. Nature Medicine.
A small potassium current in AgRP/NPY neurons regulates feeding behavior and energy metabolism Publication: Journal Article “A Small Potassium Current in AgRP/NPY Neurons Regulates Feeding Behavior and Energy Metabolism”. 2016. Cell Reports.
Vestibular neurons link motion sickness, behavioural thermoregulation and metabolic balance in mice Publication: Journal Article “Vestibular Neurons Link Motion Sickness, Behavioural Thermoregulation and Metabolic Balance in Mice”. 2025. Nature Metabolism.
A Light-Responsive Neural Circuit Suppresses Feeding Publication: Journal Article “A Light-Responsive Neural Circuit Suppresses Feeding”. 2024. Journal of Neuroscience.
Brain nuclear receptors and cardiovascular function Publication: Journal Article “Brain Nuclear Receptors and Cardiovascular Function”. 2023. Cell & Bioscience.