As pivotal players in cellular metabolism, mitochondria have a double-faceted role in the final decision of cell fate. This is true for all cell types, but it is even more important and intriguing in the cancer setting. Mitochondria regulate cell fate in many diverse ways: through metabolism, by producing ATP and other metabolites deemed vital or detrimental for cancer cells; through the regulation of Ca2+ homeostasis, especially by the joint participation of the endoplasmic reticulum in a membranous tethering system for Ca2+ signaling called mitochondria-ER associated membranes (MAMs); and by regulating signaling pathways involved in the survival of cancer cells such as mitophagy. Recent studies have shown that mitochondria can also play a...
(EN) Mitochondria are the principal intracellular organelles responsible for fuel generation; howeve...
Mitochondria form a cellular network of organelles, or cellular compartments, that efficiently coupl...
The past 5 years has seen an intense surge in research devoted toward understanding the critical rol...
Mitochondria are key regulators of cell survival and are involved in a plethora of mechanisms, such ...
In the past years, we have learnt that tumors co-evolve with their microenvironment, and that the ac...
Mitochondria are essential intracellular organelles that regulate energy metabolism, cell death, and...
AbstractThe critical role of mitochondria in cell fate decisions has been well documented over the y...
Mitochondria are required for cellular survival, yet can also orchestrate cell death. The peculiar b...
Mitochondria are intracellular organelles in eukaryotic cells that participate in bioenergy metaboli...
International audienceGlycolysis has long been considered as the major metabolic process for energy ...
Cancer is a complex disease that is characteristic by its heterogeneity in forms and symptoms. This ...
Mitochondria, known for more than a century as the energy powerhouse of a cell, represent key intrac...
Mitochondria are semi-autonomous organelles of eukaryotic cells. They perform crucial functions such...
To adapt to tumoral environment conditions or even to escape chemotherapy, cells rapidly reprogram t...
Mitochondria play a variety of important roles in eukaryotic cell physiology. In addition to produci...
(EN) Mitochondria are the principal intracellular organelles responsible for fuel generation; howeve...
Mitochondria form a cellular network of organelles, or cellular compartments, that efficiently coupl...
The past 5 years has seen an intense surge in research devoted toward understanding the critical rol...
Mitochondria are key regulators of cell survival and are involved in a plethora of mechanisms, such ...
In the past years, we have learnt that tumors co-evolve with their microenvironment, and that the ac...
Mitochondria are essential intracellular organelles that regulate energy metabolism, cell death, and...
AbstractThe critical role of mitochondria in cell fate decisions has been well documented over the y...
Mitochondria are required for cellular survival, yet can also orchestrate cell death. The peculiar b...
Mitochondria are intracellular organelles in eukaryotic cells that participate in bioenergy metaboli...
International audienceGlycolysis has long been considered as the major metabolic process for energy ...
Cancer is a complex disease that is characteristic by its heterogeneity in forms and symptoms. This ...
Mitochondria, known for more than a century as the energy powerhouse of a cell, represent key intrac...
Mitochondria are semi-autonomous organelles of eukaryotic cells. They perform crucial functions such...
To adapt to tumoral environment conditions or even to escape chemotherapy, cells rapidly reprogram t...
Mitochondria play a variety of important roles in eukaryotic cell physiology. In addition to produci...
(EN) Mitochondria are the principal intracellular organelles responsible for fuel generation; howeve...
Mitochondria form a cellular network of organelles, or cellular compartments, that efficiently coupl...
The past 5 years has seen an intense surge in research devoted toward understanding the critical rol...