Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016

Kembro, Jackelyn Melissa. Universidad Nacional de Córdoba. Facultad de Ciencias Exactas, Físicas y Naturales; Argentina.

Bibliographic Details
Main Authors: Kembro, Jackeline Melissa, Cortassa, Sonia, Lloyd, David, Sollott, Steven, Aon, Miguel
Format: dataSet
Language:spa
Published: 2020
Subjects:
Online Access:https://doi.org/10.6084/m9.figshare.7117907.v1
http://hdl.handle.net/11086/17030
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author Kembro, Jackeline Melissa
Cortassa, Sonia
Lloyd, David
Sollott, Steven
Aon, Miguel
author_facet Kembro, Jackeline Melissa
Cortassa, Sonia
Lloyd, David
Sollott, Steven
Aon, Miguel
author_sort Kembro, Jackeline Melissa
collection Repositorio Digital Universitario
description Kembro, Jackelyn Melissa. Universidad Nacional de Córdoba. Facultad de Ciencias Exactas, Físicas y Naturales; Argentina.
format dataSet
id rdu-unc.17030
institution Universidad Nacional de Cordoba
language spa
publishDate 2020
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spelling rdu-unc.170302020-12-09T05:09:28Z Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016 Kembro, Jackeline Melissa Cortassa, Sonia Lloyd, David Sollott, Steven Aon, Miguel Animal Physiology - Biophysics Animal Physiology - Systems Biophysics Mitochondria Mitochondria- bioenergetics model Oxidative stress effect Oxidative stress enzymes Kembro, Jackelyn Melissa. Universidad Nacional de Córdoba. Facultad de Ciencias Exactas, Físicas y Naturales; Argentina. Kembro, Jackelyn Melissa. Universidad Nacional de Córdoba. Facultad de Ciencias Exactas, Físicas y Naturales; Argentina. Cortassa, Sonia. National Institutes of Health. NIH · NIA Intramural Research Program; Estados Unidos. Lloyd, David. Cardiff University. School of Biosciences 1; Inglaterra. Sollot, Steven. Johns Hopkins University. Laboratory of Cardiovascular Science; Estados Unidos. Aon, Miguel. Johns Hopkins University. Laboratory of Cardiovascular Science; Estados Unidos. Analytical methods. Numerical integration of the ME-R model equations was performed with MatCont 2.4 in MATLAB 7.1, until steady-state solutions were obtained (i.e., when the magnitude of each time derivative was -10). Time series with duration of at least 6e6 ms were constructed by numerical integration of model equations. To allow transient states to vanish, the system was computed during a time lapse of 2 e8 ms.All studies were performed using the parameter setting optimized in our previous work (Kembro et al. 2013. Biophys J 104(2):332-343; Kembro et al., 2014. Front Physiol 5:257), with ADPm = 0.01mM, i.e. consistent with energized mitochondria under state 4 respiration. The two .txt file represents the time reference and the time series of variables output of the model, in order from left to right column: 1) Mitochondrial Ca+;2) Mitochondrial ADP; 3) Membrane potential; 4)Mitocondrial NADH; 5) Mitochondrial H+; 6) Mitochondrial Phosfate, Pi; 7) Isocitrate; 8) a-ketoglutarate; 9) Succinyl CoA; 10) Succinate; 11) Fumarate; 12) Malate; 13) Oxaloacetate; 14) NADPH; 15) Mitochondrial superoxide; 16) Extramitochondrial superoxide; 17) Mitochondrial hydrogen peroxide; 18) Extramitochondrial hydrogen peroxide; 19) Mitochondrial GSH; 20) Extramitochondrial GSH; 21)Mitochondrial GSSG; 22) Mitochondrial TrxSH2; 23) ExtramitochondrialTrxSH; 24)Mitochondrial PSSGm; 25) Extramitochondrial PSSG. Kembro, Jackelyn Melissa. Universidad Nacional de Córdoba. Facultad de Ciencias Exactas, Físicas y Naturales; Argentina. Kembro, Jackelyn Melissa. Universidad Nacional de Córdoba. Facultad de Ciencias Exactas, Físicas y Naturales; Argentina. Cortassa, Sonia. National Institutes of Health. NIH · NIA Intramural Research Program; Estados Unidos. Lloyd, David. Cardiff University. School of Biosciences 1; Inglaterra. Sollot, Steven. Johns Hopkins University. Laboratory of Cardiovascular Science; Estados Unidos. Aon, Miguel. Johns Hopkins University. Laboratory of Cardiovascular Science; Estados Unidos. 2020-12-07T13:40:19Z 2020-12-07T13:40:19Z 2018-09-26 dataSet Kembro, Jackelyn Melissa; Cortassa, Sonia; Lloyd, David; Sollott, Steven; Aon, Miguel (2018): Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016 mM. figshare. Dataset. https://doi.org/10.6084/m9.figshare.7117907.v1 https://doi.org/10.6084/m9.figshare.7117907.v1 http://hdl.handle.net/11086/17030 spa Atribución-NoComercial-CompartirIgual 4.0 Internacional http://creativecommons.org/licenses/by-nc-sa/4.0/
spellingShingle Animal Physiology - Biophysics
Animal Physiology - Systems
Biophysics
Mitochondria
Mitochondria- bioenergetics model
Oxidative stress effect
Oxidative stress enzymes
Kembro, Jackeline Melissa
Cortassa, Sonia
Lloyd, David
Sollott, Steven
Aon, Miguel
Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016
title Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016
title_full Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016
title_fullStr Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016
title_full_unstemmed Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016
title_short Chaotic fluctuations in mitochondrial function under oxidative stress. SOD2 concentrations of 0.016
title_sort chaotic fluctuations in mitochondrial function under oxidative stress sod2 concentrations of 0 016
topic Animal Physiology - Biophysics
Animal Physiology - Systems
Biophysics
Mitochondria
Mitochondria- bioenergetics model
Oxidative stress effect
Oxidative stress enzymes
url https://doi.org/10.6084/m9.figshare.7117907.v1
http://hdl.handle.net/11086/17030
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