INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES

In living organisms, production of <span style="text-decoration: underline;">r</span>eactive <span style="text-decoration: underline;">o</span>xygen <span style="text-decoration: underline;">s</span>pecies (ROS) is counterbalanced by...

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Main Author: Volodymyr Lushchak
Format: Article
Language:English
Published: Vasyl Stefanyk Precarpathian National University 2015-05-01
Series:Journal of Vasyl Stefanyk Precarpathian National University
Online Access:http://journals.pnu.edu.ua/index.php/jpnu/article/view/502
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spelling doaj-f98d4f57d4524b96bffda34b80a14bc52020-11-25T01:41:21ZengVasyl Stefanyk Precarpathian National UniversityJournal of Vasyl Stefanyk Precarpathian National University2311-01552413-23492015-05-012192410.15330/jpnu.2.1.9-24411INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSESVolodymyr Lushchak0Vasyl Stefanyk Precarpathian National UniversityIn living organisms, production of <span style="text-decoration: underline;">r</span>eactive <span style="text-decoration: underline;">o</span>xygen <span style="text-decoration: underline;">s</span>pecies (ROS) is counterbalanced by their elimination and/or prevention of formation which in concert can typically maintain a steady-state (stationary) ROS level. However, this balance may be disturbed and lead to elevated ROS levels and enhanced damage to biomolecules. Since 1985, when H. Sies first introduced the definition of oxidative stress, this area has become one of the hot topics in biology and, to date, many details related to ROS-induced damage to cellular components, ROS-based signaling, cellular responses and adaptation have been disclosed. However, some basal oxidative damage always occurs under unstressed conditions, and in many experimental studies it is difficult to show definitely that oxidative stress is indeed induced by the stressor. Therefore, usually researchers experience substantial difficulties in the correct interpretation of oxidative stress development. For example, in many cases an increase or decrease in the activity of antioxidant and related enzymes are interpreted as evidences of oxidative stress. Careful selection of specific biomarkers (ROS-modified targets) may be very helpful. To avoid these sorts of problems, I propose several classifications of oxidative stress based on its time-course and intensity. The time-course classification includes acute and chronic stresses. In the intensity based classification, I propose to discriminate four zones of function in the relationship between “Dose/concentration of inducer” and the measured “Endpoint”: I – basal oxidative stress zone (BOS); II – low intensity oxidative stress (LOS); III – intermediate intensity oxidative stress (IOS); IV – high intensity oxidative stress (HOS). The proposed classifications may be helpful to describe experimental data where oxidative stress is induced and systematize it based on its time course and intensity. Perspective directions of investigations in the field include development of sophisticated classifications of oxidative stresses, accurate identification of cellular ROS targets and their arranged responses to ROS influence, real <em>in situ</em> functions and operation of so-called “antioxidants”, intracellular spatiotemporal distribution and effects of ROS, deciphering of molecular mechanisms responsible for cellular response to ROS attacks, and ROS involvement in realization of normal cellular functions in cellular homeostasis.http://journals.pnu.edu.ua/index.php/jpnu/article/view/502
collection DOAJ
language English
format Article
sources DOAJ
author Volodymyr Lushchak
spellingShingle Volodymyr Lushchak
INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES
Journal of Vasyl Stefanyk Precarpathian National University
author_facet Volodymyr Lushchak
author_sort Volodymyr Lushchak
title INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES
title_short INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES
title_full INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES
title_fullStr INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES
title_full_unstemmed INTENSITY- AND TIME COURSE-BASED CLASSIFICATIONS OF OXIDATIVE STRESSES
title_sort intensity- and time course-based classifications of oxidative stresses
publisher Vasyl Stefanyk Precarpathian National University
series Journal of Vasyl Stefanyk Precarpathian National University
issn 2311-0155
2413-2349
publishDate 2015-05-01
description In living organisms, production of <span style="text-decoration: underline;">r</span>eactive <span style="text-decoration: underline;">o</span>xygen <span style="text-decoration: underline;">s</span>pecies (ROS) is counterbalanced by their elimination and/or prevention of formation which in concert can typically maintain a steady-state (stationary) ROS level. However, this balance may be disturbed and lead to elevated ROS levels and enhanced damage to biomolecules. Since 1985, when H. Sies first introduced the definition of oxidative stress, this area has become one of the hot topics in biology and, to date, many details related to ROS-induced damage to cellular components, ROS-based signaling, cellular responses and adaptation have been disclosed. However, some basal oxidative damage always occurs under unstressed conditions, and in many experimental studies it is difficult to show definitely that oxidative stress is indeed induced by the stressor. Therefore, usually researchers experience substantial difficulties in the correct interpretation of oxidative stress development. For example, in many cases an increase or decrease in the activity of antioxidant and related enzymes are interpreted as evidences of oxidative stress. Careful selection of specific biomarkers (ROS-modified targets) may be very helpful. To avoid these sorts of problems, I propose several classifications of oxidative stress based on its time-course and intensity. The time-course classification includes acute and chronic stresses. In the intensity based classification, I propose to discriminate four zones of function in the relationship between “Dose/concentration of inducer” and the measured “Endpoint”: I – basal oxidative stress zone (BOS); II – low intensity oxidative stress (LOS); III – intermediate intensity oxidative stress (IOS); IV – high intensity oxidative stress (HOS). The proposed classifications may be helpful to describe experimental data where oxidative stress is induced and systematize it based on its time course and intensity. Perspective directions of investigations in the field include development of sophisticated classifications of oxidative stresses, accurate identification of cellular ROS targets and their arranged responses to ROS influence, real <em>in situ</em> functions and operation of so-called “antioxidants”, intracellular spatiotemporal distribution and effects of ROS, deciphering of molecular mechanisms responsible for cellular response to ROS attacks, and ROS involvement in realization of normal cellular functions in cellular homeostasis.
url http://journals.pnu.edu.ua/index.php/jpnu/article/view/502
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