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Biomedical subjects

L Gramstad

Publications and source records attributed to L Gramstad.

20 records · Page 2Linked to original sources

Onset time for alcuronium and pancuronium after cremophor-containing anaesthetics.

Cremophor is a nonionic, surface-acting agent, previously shown to bind to proteins and biological membranes. The compound is used as a solvent for certain anaesthetics. The effects of this surfactant on the onset times for alcuronium and pancuronium were investigated. Both artery-to-muscle (A-M) and vein-to-muscle (V-M) onset times were determined after cremophor- and non-cremophor-containing induction agents. Circulatory effects of the surfactant were investigated by measuring the blood velocity of the brachial artery using pulsed Doppler ultrasound. A significant reduction in both A-M and V-M onset time was found for pancuronium after cremophor-containing anaesthetics. However, no difference was found for the onset times for alcuronium in the two induction groups. In contrast to alcuronium, there was no significant difference between A-M and V-M onset times for pancuronium. Arterial blood velocity was found to be practically the same after cremophor and non-cremophor induction agents. The possible of a stronger affinity of pancuronium than alcuronium to intravascular binding sites is suggested. Cremophor might, due to its protein and membrane effects, interfere with pancuronium association to these sites.

Adult↗

Plasma viscosity and cremophor-containing anaesthetics.

The cremophor-containing anaesthetic agents, Althesin, propanidid and diazepam, were added to plasma in vitro and administered to patients. In vitro these anaesthetics, and cremophor alone in concentrations equal to those obtained in vivo, decreased the viscosity of plasma 45% at shear rate 11.5 s-1. In 11 patients given cremophor-containing anaesthetics to induce anaesthesia, plasma samples obtained 5 min after injection showed a mean decrease in viscosity of 42% compared with the pre-induction values. The effect on viscosity after a single dose disappeared in 50 min. Triton x-100 added to plasma caused a decrease in viscosity similar to that of cremophor. The interaction in vitro of cremophor and Triton x-100 with concentrated urea was found to be identical both in plasma and dextran. This suggests that cremophor acts by increasing the sheet of structured water around the protein molecules, thereby preventing the aggregation of proteins.

Adult↗