Exploring mechanisms involved in renal tubular sensing of mechanical stretch following ureteric obstruction.
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Emerging urinary markers of renal injury in obstructive nephropathyPiezo1-dependent stretch-activated channels are inhibited by Polycystin-2 in renal tubular epithelial cellsThe zebrafish foxj1a transcription factor regulates cilia function in response to injury and epithelial stretchSpatially resolved shear distribution in microfluidic chip for studying force transduction mechanisms in cells.Intratubular hydrodynamic forces influence tubulointerstitial fibrosis in the kidney.Renal collecting duct epithelial cells regulate inflammation in tubulointerstitial damage in mice.Real-time observation of flow-induced cytoskeletal stress in living cells.Discerning the role of mechanosensors in regulating proximal tubule function.Shear-induced volume decrease in MDCK cells.Inflammation and EMT: an alliance towards organ fibrosis and cancer progression.A computational model of the response of adherent cells to stretch and changes in substrate stiffness.Polycystins and renovascular mechanosensory transduction.Congenital ureteropelvic junction obstruction: human disease and animal models.Polycystins, focal adhesions and extracellular matrix interactionsThe physical basis of renal fibrosis: effects of altered hydrodynamic forces on kidney homeostasis.Renal elasticity quantification by acoustic radiation force impulse applied to the evaluation of kidney diseases: a review.Cyclic stretch induces proliferation and TGF-beta1-mediated apoptosis via p38 and ERK in ureteric bud cells.Role of intratubular pressure during the ischemic phase in acute kidney injury.Mechanoprotection by polycystins against apoptosis is mediated through the opening of stretch-activated K(2P) channels.Mechanical stretch induces angiotensinogen expression through PARP1 activation in kidney proximal tubular cells.CD44v3-v10 reduces the profibrotic effects of TGF-β1 and attenuates tubular injury in the early stage of chronic obstructive nephropathy.Factors determining renal impairment in unilateral ureteral colic secondary to calcular disease: a prospective study.
P2860
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P2860
Exploring mechanisms involved in renal tubular sensing of mechanical stretch following ureteric obstruction.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 09 April 2008
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@en
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@nl
type
label
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@en
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@nl
prefLabel
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@en
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@nl
P2093
P2860
P1476
Exploring mechanisms involved ...... ollowing ureteric obstruction.
@en
P2093
John M Fitzpatrick
Mark R Quinlan
Neil G Docherty
R William G Watson
P2860
P304
P356
10.1152/AJPRENAL.00576.2007
P577
2008-04-09T00:00:00Z