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Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements

Central nervous system oxygen toxicity (CNS‐OT) manifests as tonic‐clonic seizures and is a limitation of hyperbaric oxygen therapy (HBOT), as well as of recreational and technical diving associated with elevated partial pressure of oxygen. A previous study showed that ketone ester (1,3‐butanediol a...

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Autores principales: Ari, Csilla, Koutnik, Andrew P., DeBlasi, Janine, Landon, Carol, Rogers, Christopher Q., Vallas, John, Bharwani, Sahil, Puchowicz, Michelle, Bederman, Ilya, Diamond, David M., Kindy, Mark S., Dean, Jay B., D′Agostino, Dominic P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317287/
https://www.ncbi.nlm.nih.gov/pubmed/30604923
http://dx.doi.org/10.14814/phy2.13961
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author Ari, Csilla
Koutnik, Andrew P.
DeBlasi, Janine
Landon, Carol
Rogers, Christopher Q.
Vallas, John
Bharwani, Sahil
Puchowicz, Michelle
Bederman, Ilya
Diamond, David M.
Kindy, Mark S.
Dean, Jay B.
D′Agostino, Dominic P.
author_facet Ari, Csilla
Koutnik, Andrew P.
DeBlasi, Janine
Landon, Carol
Rogers, Christopher Q.
Vallas, John
Bharwani, Sahil
Puchowicz, Michelle
Bederman, Ilya
Diamond, David M.
Kindy, Mark S.
Dean, Jay B.
D′Agostino, Dominic P.
author_sort Ari, Csilla
collection PubMed
description Central nervous system oxygen toxicity (CNS‐OT) manifests as tonic‐clonic seizures and is a limitation of hyperbaric oxygen therapy (HBOT), as well as of recreational and technical diving associated with elevated partial pressure of oxygen. A previous study showed that ketone ester (1,3‐butanediol acetoacetate diester, KE) administration delayed latency to seizures (LS) in 3‐month‐old Sprague‐Dawley (SD) rats. This study explores the effect of exogenous ketone supplements in additional dosages and formulations on CNS‐OT seizures in 18 months old SD rats, an age group correlating to human middle age. Ketogenic agents were given orally 60 min prior to exposure to hyperbaric oxygen and included control (water), KE (10 g/kg), KE/2 (KE 5 g/kg + water 5 g/kg), KE + medium‐chain triglycerides (KE 5 g/kg + MCT 5 g/kg), and ketone salt (Na(+)/K(+) β HB, KS) + MCT (KS 5 g/kg + MCT 5 g/kg). Rats were exposed to 100% oxygen at 5 atmospheres absolute (ATA). Upon seizure presentation (tonic‐clonic movements) experiments were immediately terminated and blood was tested for glucose and D‐beta‐hydroxybutyrate (D‐β HB) levels. While blood D‐β HB levels were significantly elevated post‐dive in all treatment groups, LS was significantly delayed only in KE (P = 0.0003), KE/2 (P = 0.023), and KE + MCT (P = 0.028) groups. In these groups, the severity of seizures appeared to be reduced, although these changes were significant only in KE‐treated animals (P = 0.015). Acetoacetate (AcAc) levels were also significantly elevated in KE‐treated animals. The LS in 18‐month‐old rats was delayed by 179% in KE, 219% in KE + MCT, and 55% in KE/2 groups, while only by 29% in KS + MCT. In conclusion, KE supplementation given alone and in combination with MCT elevated both β HB and AcAc, and delayed CNS‐OT seizures.
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spelling pubmed-63172872019-01-08 Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements Ari, Csilla Koutnik, Andrew P. DeBlasi, Janine Landon, Carol Rogers, Christopher Q. Vallas, John Bharwani, Sahil Puchowicz, Michelle Bederman, Ilya Diamond, David M. Kindy, Mark S. Dean, Jay B. D′Agostino, Dominic P. Physiol Rep Original Research Central nervous system oxygen toxicity (CNS‐OT) manifests as tonic‐clonic seizures and is a limitation of hyperbaric oxygen therapy (HBOT), as well as of recreational and technical diving associated with elevated partial pressure of oxygen. A previous study showed that ketone ester (1,3‐butanediol acetoacetate diester, KE) administration delayed latency to seizures (LS) in 3‐month‐old Sprague‐Dawley (SD) rats. This study explores the effect of exogenous ketone supplements in additional dosages and formulations on CNS‐OT seizures in 18 months old SD rats, an age group correlating to human middle age. Ketogenic agents were given orally 60 min prior to exposure to hyperbaric oxygen and included control (water), KE (10 g/kg), KE/2 (KE 5 g/kg + water 5 g/kg), KE + medium‐chain triglycerides (KE 5 g/kg + MCT 5 g/kg), and ketone salt (Na(+)/K(+) β HB, KS) + MCT (KS 5 g/kg + MCT 5 g/kg). Rats were exposed to 100% oxygen at 5 atmospheres absolute (ATA). Upon seizure presentation (tonic‐clonic movements) experiments were immediately terminated and blood was tested for glucose and D‐beta‐hydroxybutyrate (D‐β HB) levels. While blood D‐β HB levels were significantly elevated post‐dive in all treatment groups, LS was significantly delayed only in KE (P = 0.0003), KE/2 (P = 0.023), and KE + MCT (P = 0.028) groups. In these groups, the severity of seizures appeared to be reduced, although these changes were significant only in KE‐treated animals (P = 0.015). Acetoacetate (AcAc) levels were also significantly elevated in KE‐treated animals. The LS in 18‐month‐old rats was delayed by 179% in KE, 219% in KE + MCT, and 55% in KE/2 groups, while only by 29% in KS + MCT. In conclusion, KE supplementation given alone and in combination with MCT elevated both β HB and AcAc, and delayed CNS‐OT seizures. John Wiley and Sons Inc. 2019-01-03 /pmc/articles/PMC6317287/ /pubmed/30604923 http://dx.doi.org/10.14814/phy2.13961 Text en © 2019 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Ari, Csilla
Koutnik, Andrew P.
DeBlasi, Janine
Landon, Carol
Rogers, Christopher Q.
Vallas, John
Bharwani, Sahil
Puchowicz, Michelle
Bederman, Ilya
Diamond, David M.
Kindy, Mark S.
Dean, Jay B.
D′Agostino, Dominic P.
Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements
title Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements
title_full Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements
title_fullStr Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements
title_full_unstemmed Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements
title_short Delaying latency to hyperbaric oxygen‐induced CNS oxygen toxicity seizures by combinations of exogenous ketone supplements
title_sort delaying latency to hyperbaric oxygen‐induced cns oxygen toxicity seizures by combinations of exogenous ketone supplements
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317287/
https://www.ncbi.nlm.nih.gov/pubmed/30604923
http://dx.doi.org/10.14814/phy2.13961
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