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PMID: 15246997 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Aging of cardiac myocytes in culture: oxidative stress, lipofuscin accumulation, and mitochondrial turnover.

Annals of the New York Academy of Sciences ·Vol. 1019 ·2004-06-00 ·Pages 70-7

Terman A, Dalen H, Eaton JW, Neuzil J, Brunk UT

Abstract

Oxidative stress is believed to be an important contributor to aging, mainly affecting long-lived postmitotic cells such as cardiac myocytes and neurons. Aging cells accumulate functionally effete, often mutant and enlarged mitochondria, as well as an intralysosomal undegradable pigment, lipofuscin. To provide better insight into the role of oxidative stress, mitochondrial damage, and lipofuscinogenesis in postmitotic aging, we studied the relationship between these parameters in cultured neonatal rat cardiac myocytes. It was found that the content of lipofuscin, which varied drastically between cells, positively correlated with mitochondrial damage (evaluated by decreased innermembrane potential), as well as with the production of reactive oxygen species. These results suggest that both lipofuscin accumulation and mitochondrial damage have common underlying mechanisms, likely including imperfect autophagy and ensuing lysosomal degradation of oxidatively damaged mitochondria and other organelles. Increased size of mitochondria (possibly resulting from impaired fission due to oxidative damage to mitochondrial DNA, membranes, and proteins) also may interfere with mitochondrial turnover, leading to the appearance of so-called "giant" mitochondria. This assumption is based on our observation that pharmacological inhibition of autophagy with 3-methyladenine induced only moderate accumulation of large (senescent-like) mitochondria but drastically increased numbers of small, apparently normal mitochondria, reflecting their rapid turnover and suggesting that enlarged mitochondria are poorly autophagocytosed. Overall, our findings emphasize the importance of mitochondrial turnover in postmitotic aging and provide further support for the mitochondrial-lysosomal axis theory of aging.

MeSH Terms
Adenine/analogs & derivatives,metabolism,pharmacology Aging Animals Animals, Newborn Cells, Cultured Image Processing, Computer-Assisted Lipofuscin/metabolism Lysosomes/metabolism Mitochondria/metabolism Myocytes, Cardiac/pathology Oxidative Stress Rats Reactive Oxygen Species Time Factors
Chemicals
Lipofuscin Reactive Oxygen Species 3-methyladenine Adenine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Terman Alexei
Division of Pathology II, Faculty of Health Sciences, Linköping University, SE-58185, Linkoping, Sweden. alete@inr.liu.se
Dalen Helge
Eaton John W
Neuzil Jiri
Brunk Ulf T
Article Info
Journal
Annals of the New York Academy of Sciences
Abbr.
Ann N Y Acad Sci
ISSN
0077-8923
Published
2004-06-00
Pages
70-7
Language
English
Region
United States
NLM ID
7506858
Subset
IM
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