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Biomedical subjects

D R Borges

Publications and source records attributed to D R Borges.

At least 55 records · Page 3Linked to original sources

Acute turpentine inflammation and kinin release in rat-paw thermic oedema.

Livers from rats at 2-3 days after s.c. injection of turpentine, when perfused, synthesized prekallikrein nearly 3 times faster than did livers from normal rats. On the other hand paw oedema, produced by heating to 46 degrees, in rats injured in this way was less marked. Likewise in such rats the amount of bradykinin release by 50 min. of coaxial perfusion of the paw was only 13.6 +/- 4.6 compared with 63.1 +/- 13.4 ng in normal rats. A possible explanation for the observed reduction in production of bradykinin may be inhibition of kallikrein due to an increased concentration of alpha 2-macroglobulin.

Animals↗

Catabolism of vasoactive polypeptides by perfused rat liver.

Exsanguinated rat liver preparations perfused in situ with oxygenated saline solutions inactivated recirculating bradykinin (BK) at rates of 2.3 to 9.1 and isoleucyl5 angiotensin II (AII) at rates of 2.8 to 15.0 nmoles X min-1 X g-1 of liver, depending on the initial concentration of the peptides in the perfusion fluid (3.1 to 18.9 X 10(-6) M for BK and 8.5 to 17.0 X 10(-6) M for AII). On the other hand, at similar concentrations, recirculation of isoleucyl5 Angiotensin I (AI) for 8 min did not lead to decrease of its biological activity when assayed on the isolated rat uterus. Following a single passage through liver, picomole amounts of both BK and AII were inactivated by about 90% as revealed by assays on a superfused rat uterus. The potency ratio AI:AII, assayed on a superfused rat uterus was 1:22 and changed to 1:5 following a single passage of both peptides through liver. This finding and the separation of 4.9% of AII on carboxymethylcellulose columns following recirculation of AI through rat liver indicate a conversion of AI into AII. The dipeptides Phe-Arg, Ser-Pro and Gly-Phe were identified among the hydrolysis products of perfused BK. A peptidyldipeptide hydrolase (EC 3.4.15) may be responsible for both the BK inactivation and AI conversion. The inactivation of AII cannot be attributed to the same enzyme.

Angiotensin II↗

Kininogen and kininogenase synthesis by the liver of normal and injured rats.

Isolated livers from normal rats or from others at 2 days after subcutaneous injection of turpentine have been perfused with a simplified medium. Estimation of kininogen, kininogenase and 2 plasma proteins in the perfusates thus obtained indicate that both kininogen and kininogenase are synthesized in the liver. Furthermore, because twice as much kininogen and kininogenase was synthesized by the livers from the rats which had been injected with turpentine as by those from the normal rats, these two proteins must be considered to be members of the group of plasma proteins known as acute phase reactants.

Animals↗

Plasma kallikrein clearance by the liver of chronic carbon tetrachloride-treated rats.

We have previously reported that the endocytosis of rat plasma kallikrein (RPK) by hepatocytes is a calcium-independent and beta-galactoside-dependent mechanism. We now report the clearance of RPK by the liver of four groups of rats: normal, inflamed (48 h ex-turpentine) and two groups chronically treated with CCl4 (52 mg/kg per week, intragastrically, for 9-12 weeks). Each liver was isolated, exsanguinated and perfused at 37 degrees C with 30 mL of BSA-Krebs-Henseleit-bicarbonate medium containing 10 nmol/L RPK. Although all rats received the same mild CCl4 treatment, the liver histology showed that they evolved either to severe hepatitis (serum alanine aminotransferase [ALT] 4852 +/- 885 U/L, parenchymatous necrosis in the perivenous region) or to compensated cirrhosis (serum ALT 209 +/- 42 U/L, vigorous fibrous encircling regeneration nodules); neither jaundice nor ascites was noted. The results show that serum albumin was not altered among the groups and that: the acute-phase response by itself (inflamed group) increased RPK clearance rate (3.01 +/- 0.59 mL/min) as compared with the normal group (1.85 +/- 0.14 mL/min); the CCl4 treatment, although induced an acute-phase response, decreased (P < 0.01) RPK clearance rates (0.80 +/- 0.11 mL/min hepatitis group and 0.98 +/- 0.10 mL/min cirrhosis group). These findings suggest that the hepatic clearance rate of plasma kallikrein is an early indicator of liver injury.

Animals↗