X-linked hypophosphatemia (XLH) is the most frequent form of inherited rickets in humans caused by mutations in the phosphate-regulating gene with homologies to endopeptidases on the X-chromosome (PHEX). Hyp mice, a murine homologue of XLH, are characterized by hypophosphatemia, inappropriately low serum vitamin D levels, increased serum fibroblast growth factor-23 (Fgf23), and osteomalacia. Although Fgf23 is known to be responsible for hypophosphatemia and reduced vitamin D hormone levels in Hyp mice, its putative role as an auto-/paracrine osteomalacia-causing factor has not been explored. We recently reported that Fgf23 is a suppressor of tissue nonspecific alkaline phosphatase (Tnap) transcription via FGF receptor-3 (FGFR3) signaling, l...
an ulev and mice (Hyp) through overproduction of fibroblast growth a dose-dependent manner with a Ki...
Human physiology is dependent on an accurate phosphate (Pi) homeostasis. Defective Pi regulation cau...
Human physiology is dependent on an accurate phosphate (Pi) homeostasis. Defective Pi regulation cau...
<div><p>X-linked hypophosphatemia (XLH) is the most frequent form of inherited rickets in humans cau...
X-linked hypophosphatemia (XLH) is the most frequent form of inherited rickets in humans caused by m...
Increases in fibroblastic growth factor 23 (FGF23 or Fgf23) production by osteocytes result in hypop...
Osteocytes express multiple genes involved in mineral metabolism including PHEX, FGF23, DMP1 and FAM...
<div><p>Osteocytes express multiple genes involved in mineral metabolism including PHEX, FGF23, DMP1...
Fibroblast growth factor 23 (FGF23) is a circulating factor secreted by osteocytes that is essential...
Since phosphate is indispensable for skeletal mineralization, chronic hypophosphatemia causes ricket...
Chronic kidney disease-mineral and bone disorder (CKD-MBD) is a systemic disorder of mineral and bon...
Fibroblast growth factor-23 (FGF23) controls key responses to systemic phosphate increases through i...
Dysregulated actions of bone-derived phosphaturic hormone fibroblast growth factor 23 (FGF23) result...
The regulation of phosphate metabolism is a complex process that is still only partly understood. At...
The phosphaturic hormone Fibroblast Growth Factor 23 (FGF23) controls phosphate homeostasis by regul...
an ulev and mice (Hyp) through overproduction of fibroblast growth a dose-dependent manner with a Ki...
Human physiology is dependent on an accurate phosphate (Pi) homeostasis. Defective Pi regulation cau...
Human physiology is dependent on an accurate phosphate (Pi) homeostasis. Defective Pi regulation cau...
<div><p>X-linked hypophosphatemia (XLH) is the most frequent form of inherited rickets in humans cau...
X-linked hypophosphatemia (XLH) is the most frequent form of inherited rickets in humans caused by m...
Increases in fibroblastic growth factor 23 (FGF23 or Fgf23) production by osteocytes result in hypop...
Osteocytes express multiple genes involved in mineral metabolism including PHEX, FGF23, DMP1 and FAM...
<div><p>Osteocytes express multiple genes involved in mineral metabolism including PHEX, FGF23, DMP1...
Fibroblast growth factor 23 (FGF23) is a circulating factor secreted by osteocytes that is essential...
Since phosphate is indispensable for skeletal mineralization, chronic hypophosphatemia causes ricket...
Chronic kidney disease-mineral and bone disorder (CKD-MBD) is a systemic disorder of mineral and bon...
Fibroblast growth factor-23 (FGF23) controls key responses to systemic phosphate increases through i...
Dysregulated actions of bone-derived phosphaturic hormone fibroblast growth factor 23 (FGF23) result...
The regulation of phosphate metabolism is a complex process that is still only partly understood. At...
The phosphaturic hormone Fibroblast Growth Factor 23 (FGF23) controls phosphate homeostasis by regul...
an ulev and mice (Hyp) through overproduction of fibroblast growth a dose-dependent manner with a Ki...
Human physiology is dependent on an accurate phosphate (Pi) homeostasis. Defective Pi regulation cau...
Human physiology is dependent on an accurate phosphate (Pi) homeostasis. Defective Pi regulation cau...