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  3. Resetting of renal tissular renin-angiotensin and bradykinin-kallikrein systems after unilateral kidney denervation in rats.
 

Resetting of renal tissular renin-angiotensin and bradykinin-kallikrein systems after unilateral kidney denervation in rats.

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BORIS DOI
10.7892/boris.97728
Publisher DOI
10.1007/s00418-017-1543-y
PubMed ID
28220244
Description
The renal tissular renin-angiotensin and bradykinin-kallikrein systems control kidney function together with the renal sympathetic innervation but their interaction is still unclear. To further elucidate this relationship, we investigated these systems in rats 6 days after left kidney denervation (DNX, n = 8) compared to sham-operated controls (CTR, n = 8). Plasma renin concentration was unchanged in DNX vs. CTR (p = NS). Kidney bradykinin (BK) and angiotensin (Ang) I and II concentrations decreased bilaterally in DNX vs. CTR rats (~20 to 40%, p < 0.05) together with Ang IV and V concentrations that were extremely low (p = NS). Renin, Ang III and dopamine concentrations decreased by ~25 to 50% and norepinephrine concentrations by 99% in DNX kidneys (p < 0.05) but were unaltered in opposite kidneys. Ang II/I and KA were comparable in DNX, contralateral and CTR kidneys. Ang III/II increased in right vs. DNX or CTR kidneys (40-50%, p < 0.05). Ang II was mainly located in tubular epithelium by immunocytological staining and its cellular distribution was unaffected by DNX. Moreover, the angiotensinergic and catecholaminergic innervation of right kidneys was unchanged vs. CTR. We found an important dependency of tissular Ang and BK levels on the renal innervation that may contribute to the resetting of kidney function after DNX. The DNX-induced peptide changes were not readily explained by kidney KA, renin or plasma Ang I generation. However, tissular peptide metabolism and compartmentalization may have played a central role. The mechanisms behind the concentration changes remain unclear and deserve further clarification.
Date of Publication
2017-05
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
Angiotensin
•
Bradykinin
•
Denervation
•
Kidney
•
Sympathetic
Language(s)
en
Contributor(s)
Bohlender, Jürgen
Universitätsklinik für Allgemeine Innere Medizin
Nussberger, Jürg
Birkhäuser, Frédéric
Universitätsklinik für Urologie
Grouzmann, Eric
Thalmann, George
Universitätsklinik für Urologie
Imboden, Johann
Emeriti, Phil.-nat. Fakultät
Additional Credits
Universitätsklinik für Urologie
Emeriti, Phil.-nat. Fakultät
Universitätsklinik für Allgemeine Innere Medizin
Series
Histochemistry and cell biology
Publisher
Springer
ISSN
0948-6143
Access(Rights)
open.access
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