Abstract
Crim1 hypomorphic (Crim 1KST264/KST264) mice display progressive renal disease characterized by glomerular defects, leaky peritubular vasculature, and progressive interstitial fibrosis. Here we show that 27% of these mice also present with hydronephrosis, suggesting obstructive nephropathy. Dynamic magnetic resonance imaging using Magnevist showed fast development of hypo-intense signal in the kidneys of Crim 1KST264/KST264 mice, suggesting pooling of filtrate within the renal parenchyma. Rhodamine dextran (10 kDa) clearance was also delayed in Crim 1KST264/KST264 mice. Pyeloureteric peristalsis, while present, was less co-ordinated in Crim 1 KST264/KST264 mice. owever,isolated renal pelvis preparations suggest normal pelvic smooth muscle contractile responses. An analysis of maturation during the immediate postnatal period [postnatal day (P) 0-15] revealed defects in papillary extension in Crim 1KST264/KST264 mice. While Crim1 expression is weak in pelvic smooth muscle, strong expression is seen in the interstitium and loops of Henle of the extending papilla, commencing at the tip of the P1 papilla and disseminating throughout the papilla by P15. These results, as well as implicating Crim1 in papillary extension and pelvic smooth muscle contractility, highlight the previously unrecognized association between defects in papillary development and progression to chronic kidney disease later in life.
| Original language | English |
|---|---|
| Pages (from-to) | 499-510 |
| Number of pages | 12 |
| Journal | Journal of Pathology |
| Volume | 227 |
| Issue number | 4 |
| DOIs | |
| State | Published - Aug 2012 |
| Externally published | Yes |
Keywords
- Crim1
- functional obstruction
- hydronephrosis
- magnetic resonance imaging
- obstructive nephropathy
- pyeloureteric peristalsis