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Living unicellular eukaryote Tetrahymena pyriformis as a model for study of mitochondrial energetics in mammalian cells under conditions of reduced oxidative metabolism. 17
Elena Mokhova.
Some “animal-like” protozoa are used instead of mammalian cells in diverse investigations. _Tetrahymena pyriformis_ cells in stationary phase of growth and washed from oxidative substrates (_T.pyriformis_) function under conditions of reduced oxidative metabolism. To elucidate if _T.pyriformis_ can be applied as a model for mitochondrial energetics study in mammalian cells during hibernation, the features of _T.pyriformis_ mitochondria were compared with that of liver mitochondria isolated from hibernating animals; the published earlier data were used. Based on the respiration recording and observation of Mito Tracker Red fluorescence in living _T.pyriformis_ we tentatively concluded that the mitochondrial electrical membrane...
Tipo: Manuscript Palavras-chave: Molecular Cell Biology; Evolutionary Biology.
Ano: 2010 URL: http://precedings.nature.com/documents/4521/version/2
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Living unicellular eukaryote Tetrahymena pyriformis as a model for study of mitochondrial energetics in mammalian cells under conditions of reduced oxidative metabolism. 17
Elena Mokhova.
Some “animal-like” protozoa are used instead of mammalian cells in diverse investigations. _Tetrahymena pyriformis_ cells in stationary phase of growth and washed from oxidative substrates (_T.pyriformis_) function under conditions of reduced oxidative metabolism. To elucidate if _T.pyriformis_ can be applied as a model for mitochondrial energetics study in mammalian cells during hibernation, the features of _T.pyriformis_ mitochondria were compared with that of liver mitochondria isolated from hibernating animals; the published earlier data were used. Based on the respiration recording and observation of Mito Tracker Red fluorescence in living _T.pyriformis_ we tentatively concluded that the mitochondrial electrical membrane...
Tipo: Manuscript Palavras-chave: Molecular Cell Biology; Evolutionary Biology.
Ano: 2010 URL: http://precedings.nature.com/documents/4521/version/1
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Living unicellular eukaryote Tetrahymena pyriformis as a model for study 17
Elena Mokhova.
Some animals are able to survive for a long time under conditions of drastically reduced oxidative metabolism, called metabolic depression. The most investigated type of metabolic depression is hibernation. Research into the basic properties of liver mitochondria energetics during hibernation is essential for fundamental biology and medicine. However, the absence of the suitable hepatocyte culture makes it impossible to study the characteristic features of mitochondrial metabolic states in living cells during hibernation. We proposed that under selected conditions, the unicellular eukaryote Tetrahymena pyriformis resembles hepatocytes under hibernation, as (i) both cell types survive under condition of restricted food supply, hypoxia, and accumulation of...
Tipo: Manuscript Palavras-chave: Molecular Cell Biology; Evolutionary Biology.
Ano: 2011 URL: http://precedings.nature.com/documents/4521/version/3
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