Evidence for renal kinins as mediators of amino acid-induced hyperperfusion and hyperfiltration in the rat

26Citations
Citations of this article
5Readers
Mendeley users who have this article in their library.

Abstract

This study examined the role of tissue kallikrein and kinins in renal vasudilation produced by infusion of amino acids (AA). In rats fed a 9% protein diet for 2 wk. intravenous infusion of a 10% AA solution over 60-90 min reduced total renal vascular resistance and increased glomerular filtration rate (GFR) by 25-40% and renal plasma flow (RPF) by 23-30% from baseline. This was associated with a two- to threefold increase in urinary kinin excretion rate. Acute treatment of rats with aprolinin. a kallikrein inhibitor, resulted in deposition of immunoreactive aprotinin in kallikrein-containing connecting tubule cells and inhibited renal kallikrein activity by 90%. Aprotinin pretreatment abolished the rise in urinary kinins and prevented significant increases in GFR and RPF in response to AA. In a second group of rats pretreated with a B2 kinin receptor antagonist, [DArg Hyp3 Thi5,8 D Phe7] bradykinin, AA infusion raised urinary kinins identically as in untreated controls, but GFR and RPF responses were absent. Aprotinin or the kinin antagonist produced no consistent change in renal function in rats that were not infused with AA, AA-induced increases in kinins were not associated with an increase in renal kallikrein activity. Notably, tissue active kallikrein level fell 50% in AA-infused rats. These studies provide evidence that kinins generated in the kidney participate in mediating renal vasodilation during acute infusion of AA.

Cite

CITATION STYLE

APA

Jaffa, A. A., Vio, C. P., Silva, R. H., Vavrek, R. J., Stewart, J. M., Rust, P. F., & Mayfield, R. K. (1992). Evidence for renal kinins as mediators of amino acid-induced hyperperfusion and hyperfiltration in the rat. Journal of Clinical Investigation, 89(5), 1460–1468. https://doi.org/10.1172/JCI115736

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free