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. 2006 Oct;149(4):450-5.
doi: 10.1038/sj.bjp.0706871. Epub 2006 Sep 4.

Co-administration of pentoxifylline and thiopental causes death by acute pulmonary oedema in rats

Affiliations

Co-administration of pentoxifylline and thiopental causes death by acute pulmonary oedema in rats

J Pereda et al. Br J Pharmacol. 2006 Oct.

Erratum in

  • Br J Pharmacol. 2007 Jan;150(2):249. García-de-la-Asuneión J [corrected to García-de-la-Asunción, J]

Abstract

Background and purpose: Pentoxifylline exhibits rheological properties that improve microvascular flow and it is widely used in vascular perfusion disorders. It also exhibits marked anti-inflammatory properties by inhibiting tumour necrosis factor alpha production. Thiopental is one of the most widely used drugs for rapid induction of anaesthesia. During experimental studies on the treatment of acute pancreatitis, we observed that when pentoxifylline was administered after anaesthesia with thiopental, most of the rats exhibited dyspnea, signs of pulmonary oedema and died. The aim of the work described here was to investigate the cause of the unexpected toxic effect of the combined treatment with thiopental and pentoxifylline.

Experimental approach: Pulmonary vascular permeability and arterial blood gases were measured, and a histological analysis was performed. The possible role of haemodynamic changes in the formation of pulmonary oedema was also assessed.

Key results: Co-administration of pentoxifylline and thiopental increased pulmonary vascular permeability and markedly decreased arterial pO2, with one third of rats suffering from hypoxemia. This combined treatment caused death by acute pulmonary oedema in 27% of normal rats and aggravated the respiratory insufficiency associated with acute pancreatitis in which the mortality rate increased to 60%. This pulmonary oedema was not mediated by cardiac failure or by pulmonary hypertension.

Conclusions and implications: Co-administration of pharmacological doses of pentoxifylline and thiopental caused pulmonary oedema and death in rats. Consequently, pentoxifylline should not be administered when anaesthesia is induced with thiopental to avoid any possible risk of acute pulmonary oedema and death in humans.

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Figures

Figure 1
Figure 1
(a) Grade of pulmonary oedema and (b) pulmonary vascular permeability in rats treated with pentoxifylline and thiopental. The number of rats per group was four. The statistical difference is indicated as follows: **P<0.01 vs thiopental.
Figure 2
Figure 2
Arterial pO2 in rats treated with pentoxifylline and thiopental. The number of rats per group were five to six. The statistical difference is indicated as follows: **P<0.01 vs thiopental.
Figure 3
Figure 3
Kaplan–Meier survival curves of rats treated with pentoxifylline and thiopental or ketamine. The survival rate was also measured in rats with taurocholate-induced acute pancreatitis. The number of rats per group was 30. The statistical difference is indicated as follows: *P<0.05; **P<0.01 vs thiopental.
Figure 4
Figure 4
Histological analysis showing acute pulmonary oedema after co-administration of pentoxifylline and thiopental. Intense vascular congestion and oedema in the alveolar lumen with low inflammatory infiltrate were observed. Original magnifications were × 25 for (a) and × 100 for (b).
Figure 5
Figure 5
(a) ABF and (b) mean pulmonary arterial pressure in rats treated with pentoxifylline and thiopental. The number of rats per group was four. There was no statistical difference between groups.

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