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Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients

INTRODUCTION: Disruption of copper homeostasis and dysfunction of mitochondria have been documented in sclerotic hippocampi (HS) of patients with mesial temporal lobe epilepsy (mTLE). However, a potential link between these pathological changes has not been tackled so far. Herein, we analyzed region...

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Autores principales: Opačić, Miloš, Ristić, Aleksandar J., Sokić, Dragoslav, Baščarević, Vladimir, Raičević, Savo, Savić, Slobodan, Zorović, Maja, Živin, Marko, Šelih, Vid Simon, Spasojević, Ivan, Savić, Danijela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7882178/
http://dx.doi.org/10.1002/brb3.1986
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author Opačić, Miloš
Ristić, Aleksandar J.
Sokić, Dragoslav
Baščarević, Vladimir
Raičević, Savo
Savić, Slobodan
Zorović, Maja
Živin, Marko
Šelih, Vid Simon
Spasojević, Ivan
Savić, Danijela
author_facet Opačić, Miloš
Ristić, Aleksandar J.
Sokić, Dragoslav
Baščarević, Vladimir
Raičević, Savo
Savić, Slobodan
Zorović, Maja
Živin, Marko
Šelih, Vid Simon
Spasojević, Ivan
Savić, Danijela
author_sort Opačić, Miloš
collection PubMed
description INTRODUCTION: Disruption of copper homeostasis and dysfunction of mitochondria have been documented in sclerotic hippocampi (HS) of patients with mesial temporal lobe epilepsy (mTLE). However, a potential link between these pathological changes has not been tackled so far. Herein, we analyzed regional distribution of neuron somata density, copper concentration, and the activity of cytochrome c oxidase (CCO), a component of mitochondrial electron transport chain and copper‐containing metalloprotein, in HS. METHODS: Histochemical staining and laser ablation inductively coupled plasma mass spectrometry were carried out to construct comparable maps of these parameters in coronal sections of hippocampi of 3 mTLE‐HS patients and 3 control subjects. RESULTS: Copper levels were decreased in all regions of HS with pyramidal neuron somata. CCO activity was significantly reduced in stratum pyramidale (PY) 1 and cornu Ammonis field 4, the two regions with significant reduction in neuron somata density. CCO activity was also lower in layers that contain apical dendrites of pyramidal neurons and mossy fibers. It appears that copper deficiency in PY2 and PY3 comes before CCO activity reduction and neuronal loss. A strong positive correlation was found between neuron density, Cu concentration, and CCO activity. CONCLUSIONS: Presented results imply that pathological alterations in Cu and energy metabolism could be involved in the development of HS. A limitation of this study was the relatively small number of patients. However, presented results underline copper deficiency as a component of pathological mechanisms of epilepsy and warrant further investigation of cuproproteins and members of copper transport machinery.
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spelling pubmed-78821782021-02-19 Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients Opačić, Miloš Ristić, Aleksandar J. Sokić, Dragoslav Baščarević, Vladimir Raičević, Savo Savić, Slobodan Zorović, Maja Živin, Marko Šelih, Vid Simon Spasojević, Ivan Savić, Danijela Brain Behav Original Research INTRODUCTION: Disruption of copper homeostasis and dysfunction of mitochondria have been documented in sclerotic hippocampi (HS) of patients with mesial temporal lobe epilepsy (mTLE). However, a potential link between these pathological changes has not been tackled so far. Herein, we analyzed regional distribution of neuron somata density, copper concentration, and the activity of cytochrome c oxidase (CCO), a component of mitochondrial electron transport chain and copper‐containing metalloprotein, in HS. METHODS: Histochemical staining and laser ablation inductively coupled plasma mass spectrometry were carried out to construct comparable maps of these parameters in coronal sections of hippocampi of 3 mTLE‐HS patients and 3 control subjects. RESULTS: Copper levels were decreased in all regions of HS with pyramidal neuron somata. CCO activity was significantly reduced in stratum pyramidale (PY) 1 and cornu Ammonis field 4, the two regions with significant reduction in neuron somata density. CCO activity was also lower in layers that contain apical dendrites of pyramidal neurons and mossy fibers. It appears that copper deficiency in PY2 and PY3 comes before CCO activity reduction and neuronal loss. A strong positive correlation was found between neuron density, Cu concentration, and CCO activity. CONCLUSIONS: Presented results imply that pathological alterations in Cu and energy metabolism could be involved in the development of HS. A limitation of this study was the relatively small number of patients. However, presented results underline copper deficiency as a component of pathological mechanisms of epilepsy and warrant further investigation of cuproproteins and members of copper transport machinery. John Wiley and Sons Inc. 2020-12-07 /pmc/articles/PMC7882178/ http://dx.doi.org/10.1002/brb3.1986 Text en © 2020 The Authors. Brain and Behavior published by Wiley Periodicals LLC 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
Opačić, Miloš
Ristić, Aleksandar J.
Sokić, Dragoslav
Baščarević, Vladimir
Raičević, Savo
Savić, Slobodan
Zorović, Maja
Živin, Marko
Šelih, Vid Simon
Spasojević, Ivan
Savić, Danijela
Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
title Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
title_full Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
title_fullStr Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
title_full_unstemmed Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
title_short Regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
title_sort regional distribution of cytochrome c oxidase activity and copper in sclerotic hippocampi of epilepsy patients
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7882178/
http://dx.doi.org/10.1002/brb3.1986
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