Adaptation to metabolic acidosis and its recovery are associated with changes in anion exchanger distribution and expression in the cortical collecting duct.
about
Insulin receptor-related receptor as an extracellular alkali sensorIt is chloride depletion alkalosis, not contraction alkalosisMolecular mechanisms and regulation of urinary acidificationCollecting duct intercalated cell function and regulationThe divergence, actions, roles, and relatives of sodium-coupled bicarbonate transportersDeletion of hensin/DMBT1 blocks conversion of beta- to alpha-intercalated cells and induces distal renal tubular acidosis.Proliferation of acid-secretory cells in the kidney during adaptive remodelling of the collecting duct.Insights into acidosis-induced regulation of SLC26A4 (pendrin) and SLC4A9 (AE4) transporters using three-dimensional morphometric analysis of β-intercalated cells.Regulation of two renal chloride transporters, AE1 and pendrin, by electrolytes and aldosteroneAltered regulation of renal Acid base transporters in response to ammonium chloride loading in rats.Distinct α-intercalated cell morphology and its modification by acidosis define regions of the collecting duct.Maintaining K+ balance on the low-Na+, high-K+ diet.Effect of NBCe1 deletion on renal citrate and 2-oxoglutarate handling.Developmental immunolocalization of the Klotho protein in mouse kidney epithelial cells.Differentiation of intercalated cells in the kidney.Molecular and functional characterization of human pendrin and its allelic variants.The anion exchanger pendrin (SLC26A4) and renal acid-base homeostasis.Chloride transport.A critical appraisal of intravenous fluids: from the physiological basis to clinical evidence.Acute regulated expression of pendrin in human urinary exosomes.Metabolic Acidosis Stimulates the Production of the Antimicrobial Peptide Cathelicidin in Rabbit Urine.Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis.Genetic causes and mechanisms of distal renal tubular acidosis.Zebrafish as a Model System for Investigating the Compensatory Regulation of Ionic Balance during Metabolic Acidosis.
P2860
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P2860
Adaptation to metabolic acidosis and its recovery are associated with changes in anion exchanger distribution and expression in the cortical collecting duct.
description
2010 nî lūn-bûn
@nan
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
2010年论文
@zh
2010年论文
@zh-cn
name
Adaptation to metabolic acidos ...... the cortical collecting duct.
@ast
Adaptation to metabolic acidos ...... the cortical collecting duct.
@en
type
label
Adaptation to metabolic acidos ...... the cortical collecting duct.
@ast
Adaptation to metabolic acidos ...... the cortical collecting duct.
@en
prefLabel
Adaptation to metabolic acidos ...... the cortical collecting duct.
@ast
Adaptation to metabolic acidos ...... the cortical collecting duct.
@en
P2093
P2860
P356
P1433
P1476
Adaptation to metabolic acidos ...... the cortical collecting duct.
@en
P2093
Aya Nakamori
D Zachary Suter
George J Schwartz
Jeffrey M Purkerson
Shuichi Tsuruoka
P2860
P2888
P304
P356
10.1038/KI.2010.195
P407
P577
2010-06-30T00:00:00Z