Mitos

Mitochondrial Integrity, Toxicity and Oxidative Stress

Mitochondria are known to be as the “powerhouse” of the cells, using the energy obtained from the oxidation of carbohydrates, lipids and amino acids to generate ATP, the universal molecule used by cells to store energy.

In recent years there has been a revolution in the field of mitochondrial physiology through the discovery of new functions performed by these organelles, moving their initial role from simple “powerhouse” to a more complex hub responsible for regulating cellular signaling, energetics and redox balance.

Mitochondria therefore represent a crucial player in the regulation of diverse cellular events (e.g. ATP production, synthesis of phospholipids and heme, calcium homeostasis, ROS production, apoptotic activation and cell death) and the alterations in their functioning are associated with aging and numerous human diseases (like metabolic, endocrine, cardiomyopathies, cancer, diabetes, neurodegeneration and neuromuscular conditions).

The study of mitochondrial function is thus a critical research task that could lead to advancement in mitochondrial related disease management and treatments.

Mitos Platform

Mitochondrial Integrity, Toxicity and Oxidative Stress
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MITOS

Is an innovative in vitro platform dedicated to the characterization of mitochondrial function and dysfunction in physiopathologically relevant scenarios.
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A review of the assays provided with Mitos

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Determination of total reduced thiol content
Total Thiol assay is used to determine the antioxidant capacity of a cells.
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Quantitative evaluation of Aconitase activity
Aconitase activity is used as a biomarker for oxidative damage.
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Quantitative evaluation of Citrate Synthase (CS) activity
CS activity is used to evaluate the mitochondrial content.
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Quantitative evaluation of Proline: Cyt C oxido-reductase activity
Proline:Cyt C oxido-reductase activity is used to determine the activity of Proline dehydrogenase.
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Analyses of the oxidative phosphorylation system
Analyses of the oxidative phosphorylation system is used for the characterization of mitochondrial respiratory capacity.
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Quantitative evaluation of mGPDH: Cyt C oxido-reductase activity
mGPDH: Cyt C oxido-reductase activity is used to determine the activity of mytochondrial Glycerol-3-phosphate dehydrogenase.
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Quantitative evaluation of complex I+III (NADH:Cyt C oxido-reductase activity)
Complex I+III activity is used to evaluate the activity of the first complex of the mitochondrial electron transfer chain.
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Quantitative evaluation of Succinate: Cyt C oxido-reductase (complex II + III) activity
Cytochrome c oxidase (COX) activity is used to determine the activity of the respiratory Complex IV and can represent an indicator of the oxidative capacity of the cells.
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Quantitative evaluation of Cytochrome c oxidase (COX) activity (complex IV)
Cytochrome c oxidase (COX) activity is used to determine the activity of the respiratory Complex IV and can represent an indicator of the oxidative capacity of the cells.

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