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Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi

SIMPLE SUMMARY: Analgesia and anesthesia in aquatic animals can be challenging, and are exceptionally difficult to implement and evaluate in invertebrate species. In this study we test multiple analgesic candidates in the small Hummingbird Bobtail Squid, to identify drugs that may be effective at en...

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Autores principales: Deutsch, Skyler, Parsons, Rachel, Shia, Jonathan, Detmering, Sarah, Seng, Christopher, Ng, Alyssa, Uribe, Jacqueline, Manahan, Megan, Friedman, Amanda, Winters-Bostwick, Gabrielle, Crook, Robyn J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9953149/
https://www.ncbi.nlm.nih.gov/pubmed/36829480
http://dx.doi.org/10.3390/biology12020201
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author Deutsch, Skyler
Parsons, Rachel
Shia, Jonathan
Detmering, Sarah
Seng, Christopher
Ng, Alyssa
Uribe, Jacqueline
Manahan, Megan
Friedman, Amanda
Winters-Bostwick, Gabrielle
Crook, Robyn J.
author_facet Deutsch, Skyler
Parsons, Rachel
Shia, Jonathan
Detmering, Sarah
Seng, Christopher
Ng, Alyssa
Uribe, Jacqueline
Manahan, Megan
Friedman, Amanda
Winters-Bostwick, Gabrielle
Crook, Robyn J.
author_sort Deutsch, Skyler
collection PubMed
description SIMPLE SUMMARY: Analgesia and anesthesia in aquatic animals can be challenging, and are exceptionally difficult to implement and evaluate in invertebrate species. In this study we test multiple analgesic candidates in the small Hummingbird Bobtail Squid, to identify drugs that may be effective at enhancing welfare in cephalopods. Cephalopods are growing in popularity as comparative neuroscience models, and there is a pressing need to refine procedures to permit their ethical use. In addition to identifying analgesic candidates for cephalopods for the first time, we also validate a general anesthesia protocol for E. berryi that has been tested in other cephalopods. ABSTRACT: Cephalopods’ remarkable behavior and complex neurobiology make them valuable comparative model organisms, but studies aimed at enhancing welfare of captive cephalopods remain uncommon. Increasing regulation of cephalopods in research laboratories has resulted in growing interest in welfare-oriented refinements, including analgesia and anesthesia. Although general and local anesthesia in cephalopods have received limited prior study, there have been no studies of systemic analgesics in cephalopods to date. Here we show that analgesics from several different drug classes may be effective in E. berryi. Buprenorphine, ketorolac and dexmedetomidine, at doses similar to those used in fish, showed promising effects on baseline nociceptive thresholds, excitability of peripheral sensory nerves, and on behavioral responses to transient noxious stimulation. We found no evidence of positive effects of acetaminophen or ketamine administered at doses that are effective in vertebrates. Bioinformatic analyses suggested conserved candidate receptors for dexmedetomidine and ketorolac, but not buprenorphine. We also show that rapid general immersion anesthesia using a mix of MgCl(2) and ethanol was successful in E. berryi at multiple age classes, similar to findings in other cephalopods. These data indicate that systemic analgesia and general anesthesia in Euprymna berryi are achievable welfare enhancing interventions, but further study and refinement is warranted.
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spelling pubmed-99531492023-02-25 Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi Deutsch, Skyler Parsons, Rachel Shia, Jonathan Detmering, Sarah Seng, Christopher Ng, Alyssa Uribe, Jacqueline Manahan, Megan Friedman, Amanda Winters-Bostwick, Gabrielle Crook, Robyn J. Biology (Basel) Article SIMPLE SUMMARY: Analgesia and anesthesia in aquatic animals can be challenging, and are exceptionally difficult to implement and evaluate in invertebrate species. In this study we test multiple analgesic candidates in the small Hummingbird Bobtail Squid, to identify drugs that may be effective at enhancing welfare in cephalopods. Cephalopods are growing in popularity as comparative neuroscience models, and there is a pressing need to refine procedures to permit their ethical use. In addition to identifying analgesic candidates for cephalopods for the first time, we also validate a general anesthesia protocol for E. berryi that has been tested in other cephalopods. ABSTRACT: Cephalopods’ remarkable behavior and complex neurobiology make them valuable comparative model organisms, but studies aimed at enhancing welfare of captive cephalopods remain uncommon. Increasing regulation of cephalopods in research laboratories has resulted in growing interest in welfare-oriented refinements, including analgesia and anesthesia. Although general and local anesthesia in cephalopods have received limited prior study, there have been no studies of systemic analgesics in cephalopods to date. Here we show that analgesics from several different drug classes may be effective in E. berryi. Buprenorphine, ketorolac and dexmedetomidine, at doses similar to those used in fish, showed promising effects on baseline nociceptive thresholds, excitability of peripheral sensory nerves, and on behavioral responses to transient noxious stimulation. We found no evidence of positive effects of acetaminophen or ketamine administered at doses that are effective in vertebrates. Bioinformatic analyses suggested conserved candidate receptors for dexmedetomidine and ketorolac, but not buprenorphine. We also show that rapid general immersion anesthesia using a mix of MgCl(2) and ethanol was successful in E. berryi at multiple age classes, similar to findings in other cephalopods. These data indicate that systemic analgesia and general anesthesia in Euprymna berryi are achievable welfare enhancing interventions, but further study and refinement is warranted. MDPI 2023-01-28 /pmc/articles/PMC9953149/ /pubmed/36829480 http://dx.doi.org/10.3390/biology12020201 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Deutsch, Skyler
Parsons, Rachel
Shia, Jonathan
Detmering, Sarah
Seng, Christopher
Ng, Alyssa
Uribe, Jacqueline
Manahan, Megan
Friedman, Amanda
Winters-Bostwick, Gabrielle
Crook, Robyn J.
Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi
title Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi
title_full Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi
title_fullStr Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi
title_full_unstemmed Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi
title_short Evaluation of Candidates for Systemic Analgesia and General Anesthesia in the Emerging Model Cephalopod, Euprymna berryi
title_sort evaluation of candidates for systemic analgesia and general anesthesia in the emerging model cephalopod, euprymna berryi
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9953149/
https://www.ncbi.nlm.nih.gov/pubmed/36829480
http://dx.doi.org/10.3390/biology12020201
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