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E-GEOD-48041 GSE48041 transcription profiling by array Mus musculus

Molecular Basis of Renal Adaptation in a Murine Model of Congenital Obstructive Nephropathy

·Released June 18, 2013 ·Updated May 13, 2014
24
Samples
24
Assays
1
Array Platforms
Description

Congenital obstructive nephropathy is a common cause of chronic kidney disease and a leading indication for renal transplant in children. The cellular and molecular responses of the kidney to congenital obstruction are incompletely characterized. In this study, we evaluated global transcription in kidneys with graded hydronephrosis in the megabladder (mgb-/-) mouse to better understand the pathophysiology of congenital obstructive nephropathy. Three primary pathways associated with kidney remodeling/repair were induced in mgb-/- kidneys independent of the degree of hydronephrosis. These pathways included retinoid signaling, steroid hormone metabolism, and renal response to injury. Urothelial proliferation and the expression of genes with roles in the integrity and maintenance of the renal urothelium were selectively increased in mgb-/- kidneys. Ngal/Lcn2, a marker of acute kidney injury, was elevated in 36% of kidneys with higher grades of hydronephrosis. Evaluation of Ngalhigh versus Ngallow kidneys identified the expression of several novel candidate markers of renal injury. This study indicates that the development of progressive hydronephrosis in mgb-/- mice results in renal adaptation that includes significant changes in the morphology and potential functionality of the renal urothelium. These observations will permit the development of novel biomarkers and therapeutic approaches to progressive renal injury in the context of congenital obstruction. Gene expression was measured in control, mild, moderate and severely hydronephrotic megabladder mouse kidneys. A total of 6 control kidneys were compared to 18 mutant kidneys from age-matched male animals.

Array Platforms
A-GEOD-10787
Agilent-028005 Mouse Gene Expression 8x60K Microarray (G4852A)(24 items)
Sample Attributes
developmental stage
young adult
genotype
mgb+/+, mgb-/-
hydronephrosis degree
control, mild, moderate, severe
organism
Mus musculus
organism part
Whole Kidney
sex
male
Experiment Info
Accession
E-GEOD-48041
GEO ID
GSE48041
Type
transcription profiling by array
Organism
Mus musculus
Released
June 18, 2013
Updated
May 13, 2014
Submitter
Brian Becknell、 Ashley R Carpenter、 Jordan L Allen、 Michael E Wilhide、 David S Hains、 Kirk M McHugh、 Ashley R Carpenter、 Susan E Ingraham
Analysis Services
Analysis Services

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