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Plasma viscosity and cremophor-containing anaesthetics
British Journal of Anaesthesia
|December 1, 1979
Summary
Cremophor, a component in anesthetic agents like Althesin, reduces plasma viscosity by altering water structure around proteins. This effect, observed both in vitro and in patients, is temporary and similar to Triton X-100.
Area of Science:
- Biochemistry
- Pharmacology
- Anesthesiology
Background:
- Cremophor is a commonly used excipient in intravenous formulations.
- Anesthetic agents containing cremophor have been associated with adverse reactions.
- The physicochemical properties of cremophor and its interaction with biological fluids require further investigation.
Purpose of the Study:
- To investigate the effect of cremophor-containing anesthetic agents on plasma viscosity.
- To elucidate the mechanism by which cremophor influences plasma viscosity.
Main Methods:
- In vitro addition of anesthetic agents and cremophor to human plasma.
- Administration of cremophor-containing anesthetics to patients undergoing anesthesia induction.
- Measurement of plasma viscosity at a shear rate of 11.5 s-1 before and after anesthetic administration.
- In vitro experiments with Triton X-100 and concentrated urea.
Main Results:
- Cremophor, anesthetic agents, and cremophor alone significantly decreased plasma viscosity by approximately 45% in vitro.
- In patients, a mean decrease in plasma viscosity of 42% was observed 5 minutes after injection.
- The viscosity-reducing effect was transient, disappearing within 50 minutes.
- Triton X-100 demonstrated a similar viscosity-reducing effect, and its interaction with urea mirrored that of cremophor.
Conclusions:
- Cremophor-containing anesthetics transiently reduce plasma viscosity.
- The mechanism likely involves cremophor increasing structured water around proteins, preventing aggregation.
- These findings may have implications for understanding the physiological effects of cremophor-based formulations.