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Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity

BACKGROUND: Toxicity of calcium channel blockers leads to high patient mortality and there is no effective antidote. The benefit of using 20% lipid emulsion and sugammadex has been reported. The present study measured the effect of sugammadex and 20% lipid emulsion on hemodynamics and survival in a...

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Autores principales: Tulgar, Serkan, Kose, Halil Cihan, Piroglu, Isılay Demir, Karakilic, Evvah, Ates, Nagihan Gozde, Demir, Ahmet, Gergerli, Ruken, Guven, Selin, Piroglu, Mustafa Devrim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809387/
https://www.ncbi.nlm.nih.gov/pubmed/27012816
http://dx.doi.org/10.12659/MSM.896125
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author Tulgar, Serkan
Kose, Halil Cihan
Piroglu, Isılay Demir
Karakilic, Evvah
Ates, Nagihan Gozde
Demir, Ahmet
Gergerli, Ruken
Guven, Selin
Piroglu, Mustafa Devrim
author_facet Tulgar, Serkan
Kose, Halil Cihan
Piroglu, Isılay Demir
Karakilic, Evvah
Ates, Nagihan Gozde
Demir, Ahmet
Gergerli, Ruken
Guven, Selin
Piroglu, Mustafa Devrim
author_sort Tulgar, Serkan
collection PubMed
description BACKGROUND: Toxicity of calcium channel blockers leads to high patient mortality and there is no effective antidote. The benefit of using 20% lipid emulsion and sugammadex has been reported. The present study measured the effect of sugammadex and 20% lipid emulsion on hemodynamics and survival in a rat model of verapamil toxicity. MATERIAL/METHODS: In this single-blinded randomized control study, rats were separated into 4 groups of 7 rats each: Sugammadex (S), Sugammadex plus 20% lipid emulsion (SL), 20% lipid emulsion (L), and control (C). Heart rates and mean arterial pressures were monitored and noted each minute until death. RESULTS: Average time to death was 21.0±9.57 minutes for group C, 35.57±10.61 minutes for group S, 37.14±16.6 minutes for group L and 49.86±27.56 minutes for group SL. Time to death was significantly longer in other groups than in the control group (p<0.05). CONCLUSIONS: Verapamil overdose is has a comparatively high mortality rate and there is no effective antidote. Treatment generally involves gastric decontamination and symptomatic treatment to counteract the drug’s negative effects. In animal studies sugammadex and lipid emulsion had a positive effect on survival in patients with calcium channel blocker toxicity. Sugammadex and intralipid increased survival in a rat model of verapamil toxicity. The combination of both drugs may decrease cardiotoxicity. Sugammadex alone or combined with 20% lipid emulsion reduce the need for inotropic agents. The mechanism requires clarification with larger studies.
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spelling pubmed-48093872016-04-08 Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity Tulgar, Serkan Kose, Halil Cihan Piroglu, Isılay Demir Karakilic, Evvah Ates, Nagihan Gozde Demir, Ahmet Gergerli, Ruken Guven, Selin Piroglu, Mustafa Devrim Med Sci Monit Animal Study BACKGROUND: Toxicity of calcium channel blockers leads to high patient mortality and there is no effective antidote. The benefit of using 20% lipid emulsion and sugammadex has been reported. The present study measured the effect of sugammadex and 20% lipid emulsion on hemodynamics and survival in a rat model of verapamil toxicity. MATERIAL/METHODS: In this single-blinded randomized control study, rats were separated into 4 groups of 7 rats each: Sugammadex (S), Sugammadex plus 20% lipid emulsion (SL), 20% lipid emulsion (L), and control (C). Heart rates and mean arterial pressures were monitored and noted each minute until death. RESULTS: Average time to death was 21.0±9.57 minutes for group C, 35.57±10.61 minutes for group S, 37.14±16.6 minutes for group L and 49.86±27.56 minutes for group SL. Time to death was significantly longer in other groups than in the control group (p<0.05). CONCLUSIONS: Verapamil overdose is has a comparatively high mortality rate and there is no effective antidote. Treatment generally involves gastric decontamination and symptomatic treatment to counteract the drug’s negative effects. In animal studies sugammadex and lipid emulsion had a positive effect on survival in patients with calcium channel blocker toxicity. Sugammadex and intralipid increased survival in a rat model of verapamil toxicity. The combination of both drugs may decrease cardiotoxicity. Sugammadex alone or combined with 20% lipid emulsion reduce the need for inotropic agents. The mechanism requires clarification with larger studies. International Scientific Literature, Inc. 2016-03-25 /pmc/articles/PMC4809387/ /pubmed/27012816 http://dx.doi.org/10.12659/MSM.896125 Text en © Med Sci Monit, 2016 This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License
spellingShingle Animal Study
Tulgar, Serkan
Kose, Halil Cihan
Piroglu, Isılay Demir
Karakilic, Evvah
Ates, Nagihan Gozde
Demir, Ahmet
Gergerli, Ruken
Guven, Selin
Piroglu, Mustafa Devrim
Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity
title Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity
title_full Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity
title_fullStr Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity
title_full_unstemmed Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity
title_short Comparison of Effects of Separate and Combined Sugammadex and Lipid Emulsion Administration on Hemodynamic Parameters and Survival in a Rat Model of Verapamil Toxicity
title_sort comparison of effects of separate and combined sugammadex and lipid emulsion administration on hemodynamic parameters and survival in a rat model of verapamil toxicity
topic Animal Study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809387/
https://www.ncbi.nlm.nih.gov/pubmed/27012816
http://dx.doi.org/10.12659/MSM.896125
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