Energy is required to sustain life and enable stress adaptation. At the cellular level, energy is largely derived from mitochondria – unique multifunctional organelles with their own genome. Four main elements connect mitochondria to stress: 1) Energy is required at the molecular, (epi)genetic, cellular, organ, and systemic levels to sustain components of stress responses; 2) Glucocorticoids and other steroid hormones are produced and metabolized by mitochondria; 3) Reciprocally, mitochondria functionally respond to neuroendocrine and metabolic stress mediators; and 4) Experimentally manipulating mitochondrial functions alters physiological and behavioral responses to psychological stress. Thus, mitochondria are endocrine organelles that pr...
Exposure to early-life stress (ES) increases the vulnerability to develop metabolic diseases as well...
From an evolutionary perspective, the stress response system has evolved to ensure the survival of t...
Alterations in mitochondrial function and morphology are critical adaptations to cardiovascular stre...
Energy is required to sustain life and enable stress adaptation. At the cellular level, energy is la...
Stress-associated diseases, like depression have a life time prevalence of up to 20%, and approximat...
Background: Cells respond to environmental stressors through several key pathways, including respons...
Mitochondrion, a sub-cellular organelle originated from primary endosymbiosis, plays a vital role in...
Mitochondria play a major role in the maintaining the cellular homeostasis, it is therefore to be ex...
International audienceBackground - Mitochondria play a diversity of physiological and metabolic role...
The historical role of mitochondria resides in converting the energy released during the oxidation o...
Mitochondria play a central role in cellular energy-generating processes and are master regulators o...
The energetic costs of behavioral chronic stress are unlikelyto be sustainable without neuronal plas...
Mitochondria play a critical role in bioenergetics, enabling stress adaptation, and therefore, are c...
The ability to rapidly adapt cellular bioenergetic capabilities to meet rapidly changing environment...
International audienceThe energetic costs of behavioral chronic stress are unlikely to be sustainabl...
Exposure to early-life stress (ES) increases the vulnerability to develop metabolic diseases as well...
From an evolutionary perspective, the stress response system has evolved to ensure the survival of t...
Alterations in mitochondrial function and morphology are critical adaptations to cardiovascular stre...
Energy is required to sustain life and enable stress adaptation. At the cellular level, energy is la...
Stress-associated diseases, like depression have a life time prevalence of up to 20%, and approximat...
Background: Cells respond to environmental stressors through several key pathways, including respons...
Mitochondrion, a sub-cellular organelle originated from primary endosymbiosis, plays a vital role in...
Mitochondria play a major role in the maintaining the cellular homeostasis, it is therefore to be ex...
International audienceBackground - Mitochondria play a diversity of physiological and metabolic role...
The historical role of mitochondria resides in converting the energy released during the oxidation o...
Mitochondria play a central role in cellular energy-generating processes and are master regulators o...
The energetic costs of behavioral chronic stress are unlikelyto be sustainable without neuronal plas...
Mitochondria play a critical role in bioenergetics, enabling stress adaptation, and therefore, are c...
The ability to rapidly adapt cellular bioenergetic capabilities to meet rapidly changing environment...
International audienceThe energetic costs of behavioral chronic stress are unlikely to be sustainabl...
Exposure to early-life stress (ES) increases the vulnerability to develop metabolic diseases as well...
From an evolutionary perspective, the stress response system has evolved to ensure the survival of t...
Alterations in mitochondrial function and morphology are critical adaptations to cardiovascular stre...