Area of research
Nephrology · Geometry and Topology
Research interest
Research interests include Parathyroid Disorders and Treatments, Mathematics and Applications, Bone Metabolism and Diseases, and Bone and Dental Protein Studies.
Sustained and reversible effects of a dietary phosphate intake on bone and mineral metabolism during aging.
Bioactive silica nanoparticles target autophagy, NF-κB, and MAPK pathways to inhibit osteoclastogenesis
Bioactive silica nanoparticles target autophagy, NF-κB, and MAPK pathways to inhibit osteoclastogenesis.
Effects of phosphorus and calcium to phosphorus consumption ratio on mineral metabolism and cardiometabolic health
Bioactive effects of silica nanoparticles on bone cells are size, surface, and composition dependent
Nano-Hydroxyapatite Stimulation of Gene Expression Requires Fgf Receptor, Phosphate Transporter, and Erk1/2 Signaling
Nano-hydroxyapatite modulates osteoblast lineage commitment by stimulation of DNA methylation and regulation of gene expression
Impact of Phosphorus-Based Food Additives on Bone and Mineral Metabolism
Bioactive silica nanoparticles reverse age-associated bone loss in mice
Bioactive Silica Nanoparticles Promote Osteoblast Differentiation through Stimulation of Autophagy and Direct Association with LC3 and p62
Inorganic phosphate induces cancer cell mediated angiogenesis dependent on forkhead box protein C2 (FOXC2) regulated osteopontin expression
An integrated understanding of the physiological response to elevated extracellular phosphate
Bio-active engineered 50nm silica nanoparticles with bone anabolic activity: Therapeutic index, effective concentration, and cytotoxicity profile in vitro
Knockdown of the Sodium-Dependent Phosphate Co-Transporter 2b (NPT2b) Suppresses Lung Tumorigenesis
The effects of thiazolidinediones on human bone marrow stromal cell differentiation in vitro and in thiazolidinedione-treated patients with type 2 diabetes
Beclin1-induced Autophagy Abrogates Radioresistance of Lung Cancer Cells by Suppressing Osteopontin