Vet Med - Czech, 2013, 58(7):364-372 | DOI: 10.17221/6917-VETMED

Evaluation of different central nervous system depressors combined with ketamine for anaesthesia in miceOriginal Paper

J.M. Serrano-Caballero, A.M. Molina, A.J. Lora, J.M. Serrano-Rodriguez, F. Pena, M.R. Moyano
Veterinary Faculty, University of Cordoba, Cordoba, Spain

The aim of this study was to compare some depressors of the central nervous system combined with ketamine in order to find an adequate scombination for anaesthesia in mice, coupled with a simple, easy to use and reliable method. Forty Swiss OF-1 mice (Mus musculus), 20 females and 20 males with a body weight from 35 to 45 g aged from 12 to 16 weeks, were used to evaluate one of the following central nervous system depressors (CNSD): acepromazine (5 mg/kg), diazepam (5 mg/kg), medetomidine (1 mg/kg), midazolam (5 mg/kg) and xylazine (10 mg/kg) combined with the dissociative anaesthetic ketamine (100 mg/kg) by the intraperitoneal route. Different parameters were evaluated at regular intervals to assess the depth of anaesthesia (time of induction, time of loss and recovery of pedal withdrawal reflex, time of recovery from the anaesthesia), and respiratory and heart rate and oxygen saturation. Most of the assessment times and physiological parameters were exhibited earlier in females than in males but, in most cases, these differences were not significant. The diazepam combination resulted in death in half of the male group. Significant differences for the combination comparison were found for induction, pedal withdrawal reflex and recovery from anaesthesia, as well as for respiratory and heart rate and oxygen saturation. The best results for mice of both genders, i.e. induction, maintenance and recovery from anaesthesia were more stable with α2-agonists than with other combinations (benzodiazepines or acepromazine), which did not reach a good anaesthetic level, that is, an adequate anaesthetic plane with an absence of the pedal withdrawal reflex and the maintenance of stable vital constants.

Keywords: anaesthesia; acepromazine; diazepam; midazolam; medetomidine; xylazine

Published: July 31, 2013  Show citation

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Serrano-Caballero JM, Molina AM, Lora AJ, Serrano-Rodriguez JM, Pena F, Moyano MR. Evaluation of different central nervous system depressors combined with ketamine for anaesthesia in mice. Vet Med-Czech. 2013;58(7):364-372. doi: 10.17221/6917-VETMED.
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References

  1. Alves HC, Valentim AM, Olsson IAS, Antunes LM (2007): Intraperitoneal propofol and propofol fentanyl, sufentanil and remifentanil combinations for the mouse anaesthesia. Laboratory Animals 41, 329-336. Go to original source... Go to PubMed...
  2. Arras M, Autenried P, Rettich A, Spaeni D, Rulicke T (2001): Optimization of intraperitoneal injection anaesthesia in mice: drugs, dosages, adverse effects, and anaesthesia depth. Comparative Medicine 51, 443-456.
  3. Baker NJ, Schofield JC, Caswell MD, McLellan AD (2011): Effects of early atipamezole reversal of medetomidine-ketamine anesthesia in mice. Journal of the American Association for Laboratory Animal Science 50, 916-920. Go to PubMed...
  4. Crowell-Davis M, Murray T (2006): Veterinary psychopharmacology. Blackwell Publishing, Iowa. 270 pp. Go to original source...
  5. Cruz JI, Loste JM, Burzaco OH (1998): Observations on the use of medetomidine/ketamine and its reversal with atipamezole for chemical restraint in the mouse. Laboratory Animals 32, 18-22. Go to original source... Go to PubMed...
  6. Flecknell P (2009): Laboratory animal anaesthesia. Academic Press, London. 300 pp. Go to original source...
  7. Gaertner DJ, Hallman TH, Hankeson FC, Bacheldor HA (2008): Anaesthesia and analgesia for laboratory rodents. In: Fish RE, Brown MJ, Dallneman PJ, Karas AL (eds.): Anaesthesia and Analgesia in Laboratory Animals. Elsevier, London. 239-297. Go to original source...
  8. Green CJ (1979): Laboratory Animals Handbooks 8. Animal anaesthesia. Laboratory Animals Ltd, London.
  9. Grint NJ, Murison PJ (2008): A comparison of ketaminemidazolam and ketamine-medetomidine combinations for induction of anaesthesia in rabbits. Veterinary Anaesthesia and Analgesia 35, 113-121. Go to original source... Go to PubMed...
  10. Hahn N, Eisen RJ, Eisen L, Lane RS (2005): Ketaminemedetomidine anesthesia with atipamezole reversal: practical anesthesia for rodents under field conditions. Laboratory Animals (NY) 34, 48-51. Go to original source... Go to PubMed...
  11. Hawk CT, Leary SL (1999): Formulary for laboratory animal. University Press, Ames, Iowa. 167 pp.
  12. Henke J, Baumgartners C, Roltgen I, Eberspacher E, Erhardt W (2004): Anaesthesia with midazolam/medetomidine/fentanyl in chinchillas (Chinchilla lanigera). Compared to anaesthesia with xylacine/ketamine and medetomidine/ketamine. Journal of Veterinary Medicine A 51, 259-264. Go to original source... Go to PubMed...
  13. Kawai S, Takagi Y, Kaneko S, Kurosawa T (2011): Effect of three types of mixed anesthetic agents alternate to ketamine in mice. Experimental Animals 60, 481-487. Go to original source... Go to PubMed...
  14. Murray KA, Pekow C, Borkowski GL (2000): The Laboratory Animal Medicine and Science. University of Washington, Washington. 21 pp.
  15. Orr AE, Roughan JV, Flecknell PA (2005): Assessment of ketamine and medetomidine anaesthesia in the domestic rabbit. Veterinary Anesthesia and Analgesia 32, 271-279. Go to original source... Go to PubMed...
  16. Plumb DC (2008): Veterinary Drug Handbook. Blackwell publishing, Wisconsin. 439-443.
  17. Richardson CA, Flecknel PA (2005): Anaesthesia and post-operative analgesia following experimental surgery in laboratory rodents: Are we making progress? Alternatives to Laboratory Animals 33, 119-127. Go to original source... Go to PubMed...
  18. Sirosis M (2005): Laboratory Animal Medicine. Principles and Procedures. Elsevier Mosby, St. Louis-Missouri. 339 pp.
  19. Smith W (1993): Responses of laboratory animals to some injectable anaesthetics. Laboratory Animals 27, 30-39. Go to original source... Go to PubMed...
  20. Wamber SP, Svendsen P, Johanse B (1996): Acid-base status and cardiovascular function in mink (Mustela vison) anaesthetized with ketamine/midazolam. Laboratory Animals 30, 55-66. Go to original source... Go to PubMed...

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