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11 insights saved from this article by @science
  1. @science· The Brain

    Individual resilience and vulnerability differ because mitochondria that allocate or transform energy differently create trade-offs that divert resources away from recovery, immunity, or cognitive processes, producing fatigue, anxiety, or slower healing.

    Individual resilience and vulnerability differ because mitochondria that allocate or transform energy differently create trade-offs that divert resources away from recovery, immunity, or cognitive processes, producing fatigue, anxiety, or slower healing.
  2. @science· The Brain

    Disturbing mitochondria can change a cell’s gene expression independently of ATP because mitochondrial perturbations release signaling factors that alter transcription and growth even when energy synthesis is preserved.

    Disturbing mitochondria can change a cell’s gene expression independently of ATP because mitochondrial perturbations release signaling factors that alter transcription and growth even when energy synthesis is preserved.
  3. @science· The Brain

    A finite body energy budget forces trade-offs because when illness, injury, or chronic stress draws resources to one process, other systems and conscious experiences like attention and mood suffer.

    A finite body energy budget forces trade-offs because when illness, injury, or chronic stress draws resources to one process, other systems and conscious experiences like attention and mood suffer.
  4. @science· The Brain

    Within tissues, mitochondria are heterogeneous because subpopulations vary in biochemical activity and energy output, allowing different organelles to specialize in distinct bioenergetic or signaling roles.

    Within tissues, mitochondria are heterogeneous because subpopulations vary in biochemical activity and energy output, allowing different organelles to specialize in distinct bioenergetic or signaling roles.
  5. @science· The Brain

    Daily activity tends to match underlying mitochondrial capacity because people with lower mitochondrial output subconsciously move less, which narrows metabolic differences seen in controlled settings when measured in real life.

    Daily activity tends to match underlying mitochondrial capacity because people with lower mitochondrial output subconsciously move less, which narrows metabolic differences seen in controlled settings when measured in real life.
  6. @science· The Brain

    Faulty mitochondria impose a persistent energy deficit because they raise baseline energy burn and increase metabolic byproducts, leaving less available energy and producing chronic fatigue and greater perceived stress.

    Faulty mitochondria impose a persistent energy deficit because they raise baseline energy burn and increase metabolic byproducts, leaving less available energy and producing chronic fatigue and greater perceived stress.
  7. @science· The Brain

    Measuring mitochondrial capacity yields a scalable bioenergetic metric because extracting organelles and quantifying their contents lets researchers compute an index of energy-transforming capacity across many samples.

    Measuring mitochondrial capacity yields a scalable bioenergetic metric because extracting organelles and quantifying their contents lets researchers compute an index of energy-transforming capacity across many samples.
  8. @science· The Brain

    Think of mitochondria like circuit resistors because they regulate energy flow and convert raw metabolic current into patterned energetic signals that guide cellular function and can influence brain activity.

    Think of mitochondria like circuit resistors because they regulate energy flow and convert raw metabolic current into patterned energetic signals that guide cellular function and can influence brain activity.
  9. @science· The Brain

    Changing mitochondrial state alters perception and behavioral responses to the same stressor because different mitochondrial defects trigger distinct molecular signals that rewire stress-response pathways.

    Changing mitochondrial state alters perception and behavioral responses to the same stressor because different mitochondrial defects trigger distinct molecular signals that rewire stress-response pathways.
  10. @science· The Brain

    Mitochondria act as an interface between environment and the genome because they produce small metabolic molecules that flip genes on and off, letting nutritional and energetic states directly reshape cellular transcription.

    Mitochondria act as an interface between environment and the genome because they produce small metabolic molecules that flip genes on and off, letting nutritional and energetic states directly reshape cellular transcription.
  11. @science· The Brain

    Your mitochondria influence mood, stress, sleep, and sexual arousal because they process neurotransmitter and hormone precursors, buffer and release signaling molecules like calcium and reactive oxygen species, and produce metabolites that reshape cell signaling and gene expression.

    Your mitochondria influence mood, stress, sleep, and sexual arousal because they process neurotransmitter and hormone precursors, buffer and release signaling molecules like calcium and reactive oxygen species, and produce metabolites that reshape cell signaling and gene expression.

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