Search PubMed⌕ Search

Biomedical subjects

K Takekawa

Publications and source records attributed to K Takekawa.

43 records · Page 3Linked to original sources

Thromboxane A2 and hemodynamic-biochemical parameters in canine endotoxin shock.

Prostaglandins participate in the pathophysiology of endotoxin shock; however, their exact role has not yet been clear. In this study, we investigated the role of the proaggregatory vasoconstrictor, thromboxane A2 (TXA2), an arachidonic acid metabolite, during canine endotoxin shock. The central venous plasma levels of thromboxane B2 (TXB2), the stable metabolite of TXA2, was measured by radioimmunoassay. We also investigated the therapeutic effect of reduced glutathione (GSH), a potential cell-stabilizing sulfhydryl compound, in canine endotoxin shock. Sixty minutes after the intravenous administration of E. coli endotoxin (1 mg/kg), the plasma TXB2 levels were significantly increased from 68.8 +/- 49.0 pg/ml to 318.3 +/- 117.2 pg/ml (N = 5) in the control group and from 67.9 +/- 68,4 pg/ml to 222.6 +/- 133.2 pg/ml (N = 5) in the GSH (300 mg/kg/hr) group. The levels in the GSH group were somewhat lower than in the control group for 60 to 180 minutes after the injection of endotoxin. Thromboxane A2 value appear not to relate to early thrombocytopenia and pulmonary hypertension but to relate to the change of late coagulopathy and of pulmonary vascular resistance. The administration of GSH suppressed the lactic acidemia significantly, however there was a much more decrease in the mean arterial pressure in the GSH group than in the control group. In addition, there was a tendency to inhibit the increase of the serum beta-glucuronidase activity in the GSH group.

Animals↗

Hemodynamics in experimental endotoxin shock with continuous administration.

Experimental endotoxin shock was induced with 4 mg/kg of purified endotoxin by continuous infusion instead of bolus injection in order to simulate the clinical condition. Abrupt decrease in the mean artery pressure and transient increase in the pulmonary artery pressure, which were usually seen in the initial stage accompanying the bolus injection of endotoxin, did not occur with continuous infusion. The superior mesenteric fraction rate of cardiac output (CO) in our study showed an increase, which was different from the small intestinal fraction rate of CO shown by Okada et al. by the micro-sphere method (MS method) accompanying the bolus injection of endotoxin. These effects might be caused by the difference in the injection method and endotoxin dose. Measurements of the cardiac output, common carotid artery flow, renal artery flow and superior mesenteric artery flow proved that the largest reduction was observed in the renal blood flow.

Animals↗