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Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)

Intravenous lipid emulsions (LEs) are effective in the treatment of toxicity associated with various drugs such as local anesthetics and other lipid soluble agents. The goals of this study were to examine the effect of LE on left ventricular hemodynamic variables and systemic blood pressure in an in...

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Autores principales: Shin, Il-Woo, Hah, Young-Sool, Kim, Cheol, Park, Jungchul, Shin, Heewon, Park, Kyeong-Eon, Ok, Seong-Ho, Lee, Heon-Keun, Chung, Young-Kyun, Shim, Haeng Seon, Lim, Dong Hoon, Sohn, Ju-Tae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3979989/
https://www.ncbi.nlm.nih.gov/pubmed/24719554
http://dx.doi.org/10.7150/ijbs.8048
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author Shin, Il-Woo
Hah, Young-Sool
Kim, Cheol
Park, Jungchul
Shin, Heewon
Park, Kyeong-Eon
Ok, Seong-Ho
Lee, Heon-Keun
Chung, Young-Kyun
Shim, Haeng Seon
Lim, Dong Hoon
Sohn, Ju-Tae
author_facet Shin, Il-Woo
Hah, Young-Sool
Kim, Cheol
Park, Jungchul
Shin, Heewon
Park, Kyeong-Eon
Ok, Seong-Ho
Lee, Heon-Keun
Chung, Young-Kyun
Shim, Haeng Seon
Lim, Dong Hoon
Sohn, Ju-Tae
author_sort Shin, Il-Woo
collection PubMed
description Intravenous lipid emulsions (LEs) are effective in the treatment of toxicity associated with various drugs such as local anesthetics and other lipid soluble agents. The goals of this study were to examine the effect of LE on left ventricular hemodynamic variables and systemic blood pressure in an in vivo rat model, and to determine the associated cellular mechanism with a particular focus on nitric oxide. Two LEs (Intralipid(®) 20% and Lipofundin(®) MCT/LCT 20%) or normal saline were administered intravenously in an in vivo rat model following induction of anesthesia by intramuscular injection of tiletamine/zolazepam and xylazine. Left ventricular systolic pressure (LVSP), blood pressure, heart rate, maximum rate of intraventricular pressure increase, and maximum rate of intraventricular pressure decrease were measured before and after intravenous administration of various doses of LEs or normal saline to an in vivo rat with or without pretreatment with the non-specific nitric oxide synthase inhibitor N(ω)-nitro-L-arginine-methyl ester (L-NAME). Administration of Intralipid(®) (3 and 10 ml/kg) increased LVSP and decreased heart rate. Pretreatment with L-NAME (10 mg/kg) increased LSVP and decreased heart rate, whereas subsequent treatment with Intralipid(®) did not significantly alter LVSP. Intralipid(®) (10 ml/kg) increased mean blood pressure and decreased heart rate. The increase in LVSP induced by Lipofundin(®) MCT/LCT was greater than that induced by Intralipid(®). Intralipid(®) (1%) did not significantly alter nitric oxide donor sodium nitroprusside-induced relaxation in endothelium-denuded rat aorta. Taken together, systemic blockage of nitric oxide synthase by L-NAME increases LVSP, which is not augmented further by intralipid(®).
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spelling pubmed-39799892014-04-09 Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®) Shin, Il-Woo Hah, Young-Sool Kim, Cheol Park, Jungchul Shin, Heewon Park, Kyeong-Eon Ok, Seong-Ho Lee, Heon-Keun Chung, Young-Kyun Shim, Haeng Seon Lim, Dong Hoon Sohn, Ju-Tae Int J Biol Sci Research Paper Intravenous lipid emulsions (LEs) are effective in the treatment of toxicity associated with various drugs such as local anesthetics and other lipid soluble agents. The goals of this study were to examine the effect of LE on left ventricular hemodynamic variables and systemic blood pressure in an in vivo rat model, and to determine the associated cellular mechanism with a particular focus on nitric oxide. Two LEs (Intralipid(®) 20% and Lipofundin(®) MCT/LCT 20%) or normal saline were administered intravenously in an in vivo rat model following induction of anesthesia by intramuscular injection of tiletamine/zolazepam and xylazine. Left ventricular systolic pressure (LVSP), blood pressure, heart rate, maximum rate of intraventricular pressure increase, and maximum rate of intraventricular pressure decrease were measured before and after intravenous administration of various doses of LEs or normal saline to an in vivo rat with or without pretreatment with the non-specific nitric oxide synthase inhibitor N(ω)-nitro-L-arginine-methyl ester (L-NAME). Administration of Intralipid(®) (3 and 10 ml/kg) increased LVSP and decreased heart rate. Pretreatment with L-NAME (10 mg/kg) increased LSVP and decreased heart rate, whereas subsequent treatment with Intralipid(®) did not significantly alter LVSP. Intralipid(®) (10 ml/kg) increased mean blood pressure and decreased heart rate. The increase in LVSP induced by Lipofundin(®) MCT/LCT was greater than that induced by Intralipid(®). Intralipid(®) (1%) did not significantly alter nitric oxide donor sodium nitroprusside-induced relaxation in endothelium-denuded rat aorta. Taken together, systemic blockage of nitric oxide synthase by L-NAME increases LVSP, which is not augmented further by intralipid(®). Ivyspring International Publisher 2014-03-18 /pmc/articles/PMC3979989/ /pubmed/24719554 http://dx.doi.org/10.7150/ijbs.8048 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Shin, Il-Woo
Hah, Young-Sool
Kim, Cheol
Park, Jungchul
Shin, Heewon
Park, Kyeong-Eon
Ok, Seong-Ho
Lee, Heon-Keun
Chung, Young-Kyun
Shim, Haeng Seon
Lim, Dong Hoon
Sohn, Ju-Tae
Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)
title Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)
title_full Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)
title_fullStr Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)
title_full_unstemmed Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)
title_short Systemic Blockage of Nitric Oxide Synthase by L-NAME Increases Left Ventricular Systolic Pressure, Which Is Not Augmented Further by Intralipid(®)
title_sort systemic blockage of nitric oxide synthase by l-name increases left ventricular systolic pressure, which is not augmented further by intralipid(®)
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3979989/
https://www.ncbi.nlm.nih.gov/pubmed/24719554
http://dx.doi.org/10.7150/ijbs.8048
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