Metabolic acidosis increases intracellular calcium in bone cells through activation of the proton receptor OGR1
about
The Roles of Acidosis in Osteoclast BiologyNutritional disturbance in acid-base balance and osteoporosis: a hypothesis that disregards the essential homeostatic role of the kidneyDiet-induced acidosis: is it real and clinically relevant?Allosteric ligands for the pharmacologically dark receptors GPR68 and GPR65.Bone disease in medullary sponge kidney and effect of potassium citrate treatment.Effect of metabolic and respiratory acidosis on intracellular calcium in osteoblastsPharmacological inhibition of intracellular calcium release blocks acid-induced bone resorption.Ovarian cancer G protein-coupled receptor 1 is involved in acid-induced apoptosis of endplate chondrocytes in intervertebral discs.Molecular actions of ovarian cancer G protein-coupled receptor 1 caused by extracellular acidification in bone.Metabolic acidosis increases fibroblast growth factor 23 in neonatal mouse boneIncreased bone density in mice lacking the proton receptor OGR1.Mutations in the pH-Sensing G-protein-Coupled Receptor GPR68 Cause Amelogenesis Imperfecta.A calcium- and calpain-dependent pathway determines the response to lenalidomide in myelodysplastic syndromesIdentification of metals from osteoblastic ST-2 cell supernatants as novel OGR1 agonists.Neuro-psychopharmacological perspective of Orphan receptors of Rhodopsin (class A) family of G protein-coupled receptors.Deletion of the pH sensor GPR4 decreases renal acid excretion.Effect of Dietary Cation-Anion Difference during Prepartum and Postpartum Periods on Performance, Blood and Urine Minerals Status of Holstein Dairy Cow.Commentary to accompany the paper entitled 'nutritional disturbance in acid-base balance and osteoporosis: a hypothesis that disregards the essential homeostatic role of the kidney', by Jean-Philippe Bonjour.Effect of chronic metabolic acidosis on bone density and bone architecture in vivo in rats.Proton concentrations can be a major contributor to the modification of osteoclast and osteoblast differentiation, working independently of extracellular bicarbonate ions.Stimulation of fibroblast growth factor 23 by metabolic acidosis requires osteoblastic intracellular calcium signaling and prostaglandin synthesis.Acid Balance, Dietary Acid Load, and Bone Effects-A Controversial Subject.
P2860
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P2860
Metabolic acidosis increases intracellular calcium in bone cells through activation of the proton receptor OGR1
description
2009 nî lūn-bûn
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2009年の論文
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2009年論文
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2009年論文
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2009年論文
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name
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@ast
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@en
type
label
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@ast
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@en
prefLabel
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@ast
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@en
P2093
P2860
P356
P1476
Metabolic acidosis increases i ...... on of the proton receptor OGR1
@en
P2093
David A Bushinsky
Keith Nehrke
Kevin K Frick
Nancy S Krieger
P2860
P304
P356
10.1359/JBMR.081015
P577
2009-02-01T00:00:00Z