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Intraperitoneal co-administration of low dose urethane with xylazine and ketamine for extended duration of surgical anesthesia in rats
Author(s)
Date Issued
2015-12-22
Date Available
2024-11-26T16:57:37Z
Abstract
Procedures involving complex surgical techniques in rats, such as placement of abdominal aortic graft require extended duration of surgical anesthesia, which often can be achieved by repeated administrations of xylazine-ketamine combination. However such repeated anesthetic administration, in addition to being technically challenging, may be associated with potential adverse events due to cumulative effects of anesthesia. We report here the feasibility of using urethane at low dose (~1/10 the recommended anesthetic dose) in combination with a xylazine-ketamine mix to achieve an extended duration of surgical anesthesia in rats. The anesthesia induction phase was quick and smooth with an optimal phase of surgical anesthesia achieved for up to 90 minutes, which was significantly higher compared to that achieved with use of only xylazine-ketamine combination. The rectal temperature, heart rate and respiratory rate were within the physiological range with an uneventful recovery phase. Post surgery the rats were followed up to 3 months without any evidence of tumor or any other adverse effects related to the use of the urethane anesthetic combination. We conclude that low dose urethane can be effectively used in combination with xylazine and ketamine to achieve extended duration of surgical anesthesia up to 90 minutes in rats.
Sponsorship
University College Dublin
Other Sponsorship
Irish Blood Transfusion Service (AJPC)
Stemcology
Type of Material
Journal Article
Publisher
Springer
Journal
Laboratory Animal Research
Volume
31
Issue
4
Start Page
174
End Page
179
Language
English
Status of Item
Peer reviewed
ISSN
1738-6055
This item is made available under a Creative Commons License
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Intraperitoneal co-administration of low dose urethane with xylazine and ketamine for extended duration of surgical anesthes.pdf
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531.02 KB
Format
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