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Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure

Oxidative stress is proposed in the literature as an important player in the development of CHF and correlates with left ventricle (LV) dysfunction and hypertrophy in the failing heart. In this study, we aimed to verify if the serum oxidative stress markers differ in chronic heart failure (CHF) pati...

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Autores principales: Mongirdienė, Aušra, Liuizė, Agnė, Karčiauskaitė, Dovilė, Mazgelytė, Eglė, Liekis, Arūnas, Sadauskienė, Ilona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10001312/
https://www.ncbi.nlm.nih.gov/pubmed/36899939
http://dx.doi.org/10.3390/cells12050803
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author Mongirdienė, Aušra
Liuizė, Agnė
Karčiauskaitė, Dovilė
Mazgelytė, Eglė
Liekis, Arūnas
Sadauskienė, Ilona
author_facet Mongirdienė, Aušra
Liuizė, Agnė
Karčiauskaitė, Dovilė
Mazgelytė, Eglė
Liekis, Arūnas
Sadauskienė, Ilona
author_sort Mongirdienė, Aušra
collection PubMed
description Oxidative stress is proposed in the literature as an important player in the development of CHF and correlates with left ventricle (LV) dysfunction and hypertrophy in the failing heart. In this study, we aimed to verify if the serum oxidative stress markers differ in chronic heart failure (CHF) patients’ groups depending on the LV geometry and function. Patients were stratified into two groups according to left ventricular ejection fraction (LVEF) values: HFrEF (<40% (n = 27)) and HFpEF (≥40% (n = 33)). Additionally, patients were stratified into four groups according to LV geometry: NG–normal left ventricle geometry (n = 7), CR–concentric remodeling (n = 14), cLVH–concentric LV hypertrophy (n = 16), and eLVF–eccentric LV hypertrophy (n = 23). We measured protein (protein carbonyl (PC), nitrotyrosine (NT-Tyr), dityrosine), lipid (malondialdehyde (MDA), oxidizes (HDL) oxidation and antioxidant (catalase activity, total plasma antioxidant capacity (TAC) markers in serum. Transthoracic echocardiogram analysis and lipidogram were also performed. We found that oxidative (NT-Tyr, dityrosine, PC, MDA, oxHDL) and antioxidative (TAC, catalase) stress marker levels did not differ between the groups according to LVEF or LV geometry. NT-Tyr correlated with PC (r(s) = 0.482, p = 0.000098), and oxHDL (r(s) = 0.278, p = 0.0314). MDA correlated with total (r(s) = 0.337, p = 0.008), LDL (r(s) = 0.295, p = 0.022) and non-HDL (r(s) = 0.301, p = 0.019) cholesterol. NT-Tyr negatively correlated with HDL cholesterol (r(s) = -0.285, p = 0.027). LV parameters did not correlate with oxidative/antioxidative stress markers. Significant negative correlations were found between the end-diastolic volume of the LV and the end-systolic volume of the LV and HDL-cholesterol (r(s) = –0.935, p < 0.0001; r(s) = –0.906, p < 0.0001, respectively). Significant positive correlations between both the thickness of the interventricular septum and the thickness of the LV wall and the levels of triacylglycerol in serum (r(s) = 0.346, p = 0.007; r(s) = 0.329, p = 0.010, respectively) were found. In conclusions, we did not find a difference in serum concentrations of both oxidant (NT-Tyr, PC, MDA) and antioxidant (TAC and catalase) concentrations in CHF patients’ groups according to LV function and geometry was found. The geometry of the LV could be related to lipid metabolism in CHF patients, and no correlation between oxidative/antioxidant and LV markers in CHF patients was found.
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spelling pubmed-100013122023-03-11 Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure Mongirdienė, Aušra Liuizė, Agnė Karčiauskaitė, Dovilė Mazgelytė, Eglė Liekis, Arūnas Sadauskienė, Ilona Cells Article Oxidative stress is proposed in the literature as an important player in the development of CHF and correlates with left ventricle (LV) dysfunction and hypertrophy in the failing heart. In this study, we aimed to verify if the serum oxidative stress markers differ in chronic heart failure (CHF) patients’ groups depending on the LV geometry and function. Patients were stratified into two groups according to left ventricular ejection fraction (LVEF) values: HFrEF (<40% (n = 27)) and HFpEF (≥40% (n = 33)). Additionally, patients were stratified into four groups according to LV geometry: NG–normal left ventricle geometry (n = 7), CR–concentric remodeling (n = 14), cLVH–concentric LV hypertrophy (n = 16), and eLVF–eccentric LV hypertrophy (n = 23). We measured protein (protein carbonyl (PC), nitrotyrosine (NT-Tyr), dityrosine), lipid (malondialdehyde (MDA), oxidizes (HDL) oxidation and antioxidant (catalase activity, total plasma antioxidant capacity (TAC) markers in serum. Transthoracic echocardiogram analysis and lipidogram were also performed. We found that oxidative (NT-Tyr, dityrosine, PC, MDA, oxHDL) and antioxidative (TAC, catalase) stress marker levels did not differ between the groups according to LVEF or LV geometry. NT-Tyr correlated with PC (r(s) = 0.482, p = 0.000098), and oxHDL (r(s) = 0.278, p = 0.0314). MDA correlated with total (r(s) = 0.337, p = 0.008), LDL (r(s) = 0.295, p = 0.022) and non-HDL (r(s) = 0.301, p = 0.019) cholesterol. NT-Tyr negatively correlated with HDL cholesterol (r(s) = -0.285, p = 0.027). LV parameters did not correlate with oxidative/antioxidative stress markers. Significant negative correlations were found between the end-diastolic volume of the LV and the end-systolic volume of the LV and HDL-cholesterol (r(s) = –0.935, p < 0.0001; r(s) = –0.906, p < 0.0001, respectively). Significant positive correlations between both the thickness of the interventricular septum and the thickness of the LV wall and the levels of triacylglycerol in serum (r(s) = 0.346, p = 0.007; r(s) = 0.329, p = 0.010, respectively) were found. In conclusions, we did not find a difference in serum concentrations of both oxidant (NT-Tyr, PC, MDA) and antioxidant (TAC and catalase) concentrations in CHF patients’ groups according to LV function and geometry was found. The geometry of the LV could be related to lipid metabolism in CHF patients, and no correlation between oxidative/antioxidant and LV markers in CHF patients was found. MDPI 2023-03-04 /pmc/articles/PMC10001312/ /pubmed/36899939 http://dx.doi.org/10.3390/cells12050803 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
Mongirdienė, Aušra
Liuizė, Agnė
Karčiauskaitė, Dovilė
Mazgelytė, Eglė
Liekis, Arūnas
Sadauskienė, Ilona
Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure
title Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure
title_full Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure
title_fullStr Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure
title_full_unstemmed Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure
title_short Relationship between Oxidative Stress and Left Ventricle Markers in Patients with Chronic Heart Failure
title_sort relationship between oxidative stress and left ventricle markers in patients with chronic heart failure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10001312/
https://www.ncbi.nlm.nih.gov/pubmed/36899939
http://dx.doi.org/10.3390/cells12050803
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