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Biomedical subjects

O Lindquist

Publications and source records attributed to O Lindquist.

69 records · Page 4Linked to original sources

Pulmonary damage following pulmonary microembolism in the dog. Effect of various types of treatment.

In the present study the pathogenesis of the pulmonary damage following infusion of thrombin in combination with a fibrinolysis inhibitor, AMCA, in the dog was elucidated. An important mechanism in the development of the pulmonary damage following infusion of thrombin and AMCA seems to be an increased vascular permeability in the pulmonary microvasculature leading to pulmonary oedema. The question whether this pulmonary damage can be prevented by antihistamine (mepyramine maleate), antiserotonins (methysergide, reserpine) antiprostaglandins (acetylsalicylic acid, indomethacin, polyphloretin phosphate), 'anti-inflammatory agents' (methylprednisolone, calcium) or an anti-adrenergic agent (phenoxybenzamine) was investigated. None of these agents did prevent the lung damage following thrombin and AMCA. In order to study the possible role of bronchoconstriction, the complement system and the kinin system for this damage dogs were also artificially ventilated with an increased end-expiratory pressure, decomplemented with cobra venom factor or treated with Trasylol respectively. Neither were these treatments effective in preventing the pulmonary damage. The findings of the present study suggest that the permeability increasing substance involved in the pathogenesis of the pulmonary damage following thrombin and AMCA is not histamine, serotonin, prostaglandins or bradykinin. Therefore another, still unknown factor, may be of greater importance for this damage.

Animals↗

Induction of endogenous fibrinolysis inhibition in the dog. Effect of intravascular coagulation and release of free fatty acids.

Possible mechanisms underlying the development of fibrinolysis inhibition following trauma were studied. In order to investigate the role of intravascular coagulation dogs were subjected to infusions of thrombin or endotoxin, which both caused an increase in urokinase inhibitor activity in serum after 24 and 48 hours. The inhibitor increase following thrombin infusion was not, however, prevented by previous defibrinogenation with Defibrase or by induction of thrombocytopenia with antiplatelet serum, suggesting that neither platelets nor fibrinogen are necessary for the post-traumatic occurrence of fibrinolysis inhibition. In all groups subjected to infusion of thrombin an increase in plasma free fatty acids (FFA) was observed. The role of this increase for the development of fibrinolysis inhibition was tested by infusion of norepinephrine alone and in combination with nicotinic acid. Norepinephrine caused an increase of FFA after 2 hours and in urokinase inhibitor activity after 24-48 hours. Both of these were diminished by high doses of nicotinic acid, indicating that the release of FFA rather than intravascular coagulation might be the principal mechanism underlying the occurrence of fibrinolysis inhibition following trauma.

Animals↗

Lethal intoxications with centrally stimulating amines in Sweden 1966-1973.

Fatal intoxications with centrally stimulating amines (CSA) have become increasingly common in Sweden. Toxicological data and pathological findings of 32 cases of amphetamine and phenmetrazine intoxications which occurred from 1966-1973 in Sweden are described. Furthermore, 13 cases where these drugs were not the cause of death, but found in urine and organs, are reported.

Accidents↗

Insulin in post-mortem blood.

In 29 cases of sudden death the insulin concentration in blood from the right heart and the femoral vein was determined by a radioimmunological method. The concentrations in the femoral venous blood were below 60 muU/ml serum (mean 23 muU/ml), i.e. in the same order of magnitude as in living persons. In right heart blood the insulin values were about 10 times higher, probably due to post-mortal diffusion of insulin via the portal vein. In suspected hyperinsulinism the measurements should therefore be made on peripheral venous blood.

Adult↗