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PMID: 11592947 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Renal ischemic injury results in permanent damage to peritubular capillaries and influences long-term function.

American journal of physiology. Renal physiology ·Vol. 281 ·No. 5 ·2001-11-00 ·Pages F887-99

Basile DP, Donohoe D, Roethe K, Osborn JL

Abstract

Acute episodes of severe renal ischemia result in acute renal failure (ARF). These episodes are followed by a characteristic recovery and repair response, whereby tubular morphology and renal function appear completely restored within approximately 1 mo. However, the chronic effects of such an injury have not been well studied. Male rats were subjected to 60-min bilateral ischemia followed by reperfusion, yielding a characteristic injury. Postischemic animals manifested severe diuresis, peaking at 1 wk postinjury (volume: >45 ml/day, ARF vs. 18 ml/day, sham; P < 0.05). Urine flow subsequently declined but remained significantly elevated vs. sham animals for a 40-wk period. The prolonged alteration in urinary concentrating ability was attributable, in part, to a diminished capacity to generate a hypertonic medullary interstitium. By week 16, proteinuria developed in the post-ARF group and progressed for the duration of the study. Histological examination revealed essentially normal tubular morphology at 4 and 8 wk postinjury but the development of tubulointerstitial fibrosis at 40 wk. Transforming growth factor (TGF)-beta1 expression was elevated at 40 wk, but not at 4 and 8 wk postinjury. Microfil analysis revealed an approximately 30-50% reduction in peritubular capillary density in the inner stripe of the outer medulla at 4, 8, and 40 wk in post-ARF groups vs. sham animals. In addition, post-ARF rats manifested a significant pressor response to a low dose of ANG II (15 ng x kg(-1) x min(-1)). We hypothesize that severe ischemic injury results in a permanent alteration of renal capillary density, contributing to a urinary concentrating defect and the predisposition toward the development of renal fibrosis.

MeSH Terms
Acute Kidney Injury/etiology Animals Blood Pressure Capillaries/physiopathology Dehydration Diuresis Fibrosis Ischemia/physiopathology Kidney/blood supply,pathology Kidney Concentrating Ability Kidney Tubules/blood supply Male Natriuresis Osmolar Concentration Proteinuria RNA, Messenger/analysis Rats Rats, Sprague-Dawley Reperfusion Injury/physiopathology Transforming Growth Factor beta/genetics Transforming Growth Factor beta1 Urine
Chemicals
RNA, Messenger Tgfb1 protein, rat Transforming Growth Factor beta Transforming Growth Factor beta1
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Basile D P
Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA. dbasile@mcw.edu
Donohoe D
Roethe K
Osborn J L
Article Info
Journal
American journal of physiology. Renal physiology
Abbr.
Am J Physiol Renal Physiol
ISSN
1931-857X
Published
2001-11-00
Pages
F887-99
Language
English
Region
United States
NLM ID
100901990
Subset
IM
Grants
NIDDK NIH HHS · DK-54350 · United States
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