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Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane

Mitochondrial calcium overload is a crucial event in determining the fate of neuronal cell survival and death, implicated in pathogenesis of neurodegenerative diseases. One of the driving forces of calcium influx into mitochondria is mitochondria membrane potential (ΔΨ(m)). Therefore, pharmacologica...

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Autores principales: Lee, Ji Hyung, Amarsanaa, Khulan, Wu, Jinji, Jeon, Sang-Chan, Cui, Yanji, Jung, Sung-Cherl, Park, Deok-Bae, Kim, Se-Jae, Han, Sang-Heon, Kim, Hyun-Wook, Rhyu, Im Joo, Eun, Su-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Physiological Society and The Korean Society of Pharmacology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5928344/
https://www.ncbi.nlm.nih.gov/pubmed/29719453
http://dx.doi.org/10.4196/kjpp.2018.22.3.311
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author Lee, Ji Hyung
Amarsanaa, Khulan
Wu, Jinji
Jeon, Sang-Chan
Cui, Yanji
Jung, Sung-Cherl
Park, Deok-Bae
Kim, Se-Jae
Han, Sang-Heon
Kim, Hyun-Wook
Rhyu, Im Joo
Eun, Su-Yong
author_facet Lee, Ji Hyung
Amarsanaa, Khulan
Wu, Jinji
Jeon, Sang-Chan
Cui, Yanji
Jung, Sung-Cherl
Park, Deok-Bae
Kim, Se-Jae
Han, Sang-Heon
Kim, Hyun-Wook
Rhyu, Im Joo
Eun, Su-Yong
author_sort Lee, Ji Hyung
collection PubMed
description Mitochondrial calcium overload is a crucial event in determining the fate of neuronal cell survival and death, implicated in pathogenesis of neurodegenerative diseases. One of the driving forces of calcium influx into mitochondria is mitochondria membrane potential (ΔΨ(m)). Therefore, pharmacological manipulation of ΔΨ(m) can be a promising strategy to prevent neuronal cell death against brain insults. Based on these issues, we investigated here whether nobiletin, a Citrus polymethoxylated flavone, prevents neurotoxic neuronal calcium overload and cell death via regulating basal ΔΨ(m) against neuronal insult in primary cortical neurons and pure brain mitochondria isolated from rat cortices. Results demonstrated that nobiletin treatment significantly increased cell viability against glutamate toxicity (100 µM, 20 min) in primary cortical neurons. Real-time imaging-based fluorometry data reveal that nobiletin evokes partial mitochondrial depolarization in these neurons. Nobiletin markedly attenuated mitochondrial calcium overload and reactive oxygen species (ROS) generation in glutamate (100 µM)-stimulated cortical neurons and isolated pure mitochondria exposed to high concentration of Ca(2+) (5 µM). Nobiletin-induced partial mitochondrial depolarization in intact neurons was confirmed in isolated brain mitochondria using a fluorescence microplate reader. Nobiletin effects on basal ΔΨ(m) were completely abolished in K(+)-free medium on pure isolated mitochondria. Taken together, results demonstrate that K(+) influx into mitochondria is critically involved in partial mitochondrial depolarization-related neuroprotective effect of nobiletin. Nobiletin-induced mitochondrial K(+) influx is probably mediated, at least in part, by activation of mitochondrial K(+) channels. However, further detailed studies should be conducted to determine exact molecular targets of nobiletin in mitochondria.
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spelling pubmed-59283442018-05-01 Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane Lee, Ji Hyung Amarsanaa, Khulan Wu, Jinji Jeon, Sang-Chan Cui, Yanji Jung, Sung-Cherl Park, Deok-Bae Kim, Se-Jae Han, Sang-Heon Kim, Hyun-Wook Rhyu, Im Joo Eun, Su-Yong Korean J Physiol Pharmacol Original Article Mitochondrial calcium overload is a crucial event in determining the fate of neuronal cell survival and death, implicated in pathogenesis of neurodegenerative diseases. One of the driving forces of calcium influx into mitochondria is mitochondria membrane potential (ΔΨ(m)). Therefore, pharmacological manipulation of ΔΨ(m) can be a promising strategy to prevent neuronal cell death against brain insults. Based on these issues, we investigated here whether nobiletin, a Citrus polymethoxylated flavone, prevents neurotoxic neuronal calcium overload and cell death via regulating basal ΔΨ(m) against neuronal insult in primary cortical neurons and pure brain mitochondria isolated from rat cortices. Results demonstrated that nobiletin treatment significantly increased cell viability against glutamate toxicity (100 µM, 20 min) in primary cortical neurons. Real-time imaging-based fluorometry data reveal that nobiletin evokes partial mitochondrial depolarization in these neurons. Nobiletin markedly attenuated mitochondrial calcium overload and reactive oxygen species (ROS) generation in glutamate (100 µM)-stimulated cortical neurons and isolated pure mitochondria exposed to high concentration of Ca(2+) (5 µM). Nobiletin-induced partial mitochondrial depolarization in intact neurons was confirmed in isolated brain mitochondria using a fluorescence microplate reader. Nobiletin effects on basal ΔΨ(m) were completely abolished in K(+)-free medium on pure isolated mitochondria. Taken together, results demonstrate that K(+) influx into mitochondria is critically involved in partial mitochondrial depolarization-related neuroprotective effect of nobiletin. Nobiletin-induced mitochondrial K(+) influx is probably mediated, at least in part, by activation of mitochondrial K(+) channels. However, further detailed studies should be conducted to determine exact molecular targets of nobiletin in mitochondria. The Korean Physiological Society and The Korean Society of Pharmacology 2018-05 2018-04-25 /pmc/articles/PMC5928344/ /pubmed/29719453 http://dx.doi.org/10.4196/kjpp.2018.22.3.311 Text en Copyright © Korean J Physiol Pharmacol http://creativecommons.org/licenses/by-nc/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Lee, Ji Hyung
Amarsanaa, Khulan
Wu, Jinji
Jeon, Sang-Chan
Cui, Yanji
Jung, Sung-Cherl
Park, Deok-Bae
Kim, Se-Jae
Han, Sang-Heon
Kim, Hyun-Wook
Rhyu, Im Joo
Eun, Su-Yong
Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane
title Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane
title_full Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane
title_fullStr Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane
title_full_unstemmed Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane
title_short Nobiletin attenuates neurotoxic mitochondrial calcium overload through K(+) influx and ΔΨ(m) across mitochondrial inner membrane
title_sort nobiletin attenuates neurotoxic mitochondrial calcium overload through k(+) influx and δψ(m) across mitochondrial inner membrane
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5928344/
https://www.ncbi.nlm.nih.gov/pubmed/29719453
http://dx.doi.org/10.4196/kjpp.2018.22.3.311
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