Cargando…

Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers

Senescence of cardiac myocytes is frequently associated with heart diseases. To analyze senescence in cardiac myocytes, a number of biomarkers have been isolated. However, due to the complex nature of senescence, multiple markers are required for a single assay to accurately depict complex physiolog...

Descripción completa

Detalles Bibliográficos
Autores principales: Cha, Jung-Joon, Park, Yangkyu, Yun, Joho, Kim, Hyeon Woo, Park, Chang-Ju, Kang, Giseok, Jung, Minhyun, Pak, Boryeong, Jin, Suk-Won, Lee, Jong-Hyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5080468/
https://www.ncbi.nlm.nih.gov/pubmed/27812531
http://dx.doi.org/10.1155/2016/8484217
_version_ 1782462723045457920
author Cha, Jung-Joon
Park, Yangkyu
Yun, Joho
Kim, Hyeon Woo
Park, Chang-Ju
Kang, Giseok
Jung, Minhyun
Pak, Boryeong
Jin, Suk-Won
Lee, Jong-Hyun
author_facet Cha, Jung-Joon
Park, Yangkyu
Yun, Joho
Kim, Hyeon Woo
Park, Chang-Ju
Kang, Giseok
Jung, Minhyun
Pak, Boryeong
Jin, Suk-Won
Lee, Jong-Hyun
author_sort Cha, Jung-Joon
collection PubMed
description Senescence of cardiac myocytes is frequently associated with heart diseases. To analyze senescence in cardiac myocytes, a number of biomarkers have been isolated. However, due to the complex nature of senescence, multiple markers are required for a single assay to accurately depict complex physiological changes associated with senescence. In single cells, changes in both cytoplasm and cell membrane during senescence can affect the changes in electrical impedance. Based on this phenomenon, we developed MEDoS, a novel microelectrochemical impedance spectroscopy for diagnosis of senescence, which allows us to precisely measure quantitative changes in electrical properties of aging cells. Using cardiac myocytes isolated from 3-, 6-, and 18-month-old isogenic zebrafish, we examined the efficacy of MEDoS and showed that MEDoS can identify discernible changes in electrical impedance. Taken together, our data demonstrated that electrical impedance in cells at different ages is distinct with quantitative values; these results were comparable with previously reported ones. Therefore, we propose that MEDoS be used as a new biomarker-independent methodology to obtain quantitative data on the biological senescence status of individual cells.
format Online
Article
Text
id pubmed-5080468
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-50804682016-11-03 Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers Cha, Jung-Joon Park, Yangkyu Yun, Joho Kim, Hyeon Woo Park, Chang-Ju Kang, Giseok Jung, Minhyun Pak, Boryeong Jin, Suk-Won Lee, Jong-Hyun Biomed Res Int Research Article Senescence of cardiac myocytes is frequently associated with heart diseases. To analyze senescence in cardiac myocytes, a number of biomarkers have been isolated. However, due to the complex nature of senescence, multiple markers are required for a single assay to accurately depict complex physiological changes associated with senescence. In single cells, changes in both cytoplasm and cell membrane during senescence can affect the changes in electrical impedance. Based on this phenomenon, we developed MEDoS, a novel microelectrochemical impedance spectroscopy for diagnosis of senescence, which allows us to precisely measure quantitative changes in electrical properties of aging cells. Using cardiac myocytes isolated from 3-, 6-, and 18-month-old isogenic zebrafish, we examined the efficacy of MEDoS and showed that MEDoS can identify discernible changes in electrical impedance. Taken together, our data demonstrated that electrical impedance in cells at different ages is distinct with quantitative values; these results were comparable with previously reported ones. Therefore, we propose that MEDoS be used as a new biomarker-independent methodology to obtain quantitative data on the biological senescence status of individual cells. Hindawi Publishing Corporation 2016 2016-10-12 /pmc/articles/PMC5080468/ /pubmed/27812531 http://dx.doi.org/10.1155/2016/8484217 Text en Copyright © 2016 Jung-Joon Cha et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Cha, Jung-Joon
Park, Yangkyu
Yun, Joho
Kim, Hyeon Woo
Park, Chang-Ju
Kang, Giseok
Jung, Minhyun
Pak, Boryeong
Jin, Suk-Won
Lee, Jong-Hyun
Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers
title Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers
title_full Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers
title_fullStr Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers
title_full_unstemmed Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers
title_short Cell Electrical Impedance as a Novel Approach for Studies on Senescence Not Based on Biomarkers
title_sort cell electrical impedance as a novel approach for studies on senescence not based on biomarkers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5080468/
https://www.ncbi.nlm.nih.gov/pubmed/27812531
http://dx.doi.org/10.1155/2016/8484217
work_keys_str_mv AT chajungjoon cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT parkyangkyu cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT yunjoho cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT kimhyeonwoo cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT parkchangju cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT kanggiseok cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT jungminhyun cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT pakboryeong cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT jinsukwon cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers
AT leejonghyun cellelectricalimpedanceasanovelapproachforstudiesonsenescencenotbasedonbiomarkers