Area of research
Water Science and Technology · Environmental Chemistry
Research interest
Research focused on Fluoride and Skeletal fluorosis, with related work in Arsenic, China, Protein kinase B. Notable publications include 'Arsenic exposure elevated ROS promotes energy metabolic reprogramming with enhanced AKT-dependent HK2 expression', 'Association between fluoride exposure and kidney function in adults: A cross-sectional study based on endemic fluorosis area in China', and 'Research for type 2 diabetes mellitus in endemic arsenism areas in central China: role of low level of arsenic exposure and KEAP1 rs11545829 polymorphism'.
SIRT1/P53 pathway is involved in the Arsenic induced aerobic glycolysis in hepatocytes L-02 cells
Association between arsenic (+3 oxidation state) methyltransferase gene polymorphisms and arsenic methylation capacity in rural residents of northern China: a cross-sectional study
LDL receptor-related protein 5 rs648438 polymorphism is associated with the risk of skeletal fluorosis
Arsenic exposure elevated ROS promotes energy metabolic reprogramming with enhanced AKT-dependent HK2 expression
Research for type 2 diabetes mellitus in endemic arsenism areas in central China: role of low level of arsenic exposure and KEAP1 rs11545829 polymorphism
Malignant growth of arsenic-transformed cells depends on activated Akt induced by reactive oxygen species
Low-dose arsenic trioxide enhances membrane-GLUT1 expression and glucose uptake via AKT activation to support L-02 cell aberrant proliferation
Association between fluoride exposure and kidney function in adults: A cross-sectional study based on endemic fluorosis area in China
High Iodine Induces the Proliferation of Papillary and Anaplastic Thyroid Cancer Cells via AKT/Wee1/CDK1 Axis
miR-21-5p and canonical Wnt signaling pathway promote osteoblast function through a feed-forward loop induced by fluoride
Association between Bone Morphogenetic Protein 2 Gene Polymorphisms and Skeletal Fluorosis of The Brick-tea Type Fluorosis in Tibetans and Kazakhs, China
sKlotho is associated with the severity of brick tea-type skeletal fluorosis in China
Association between ALOX15 gene polymorphism and brick-tea type skeletal fluorosis in Tibetans, Kazaks and Han, China
FRZB1 rs2242070 polymorphisms is associated with brick tea type skeletal fluorosis in Kazakhs, but not in Tibetans, China