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  2. Mitochondrial biogenesis - Wikipedia

    en.wikipedia.org/wiki/Mitochondrial_biogenesis

    Mitochondrial biogenesis is the process by which cells increase mitochondrial numbers. [1] [2] It was first described by John Holloszy in the 1960s, when it was discovered that physical endurance training induced higher mitochondrial content levels, leading to greater glucose uptake by muscles. [3]

  3. Could stopping NAD depletion be key to slowing down aging? - AOL

    www.aol.com/could-stopping-nad-depletion-key...

    Daily exercise can also help stimulate mitochondrial biogenesis and increase energy demand,” she detailed. Segil urged readers to consider oral NAD supplements rather than infusions for safety ...

  4. Pparg coactivator 1 alpha - Wikipedia

    en.wikipedia.org/wiki/Pparg_coactivator_1_alpha

    PGC-1α provides a direct link between external physiological stimuli and the regulation of mitochondrial biogenesis, and is a major factor causing slow-twitch rather than fast-twitch muscle fiber types. [10] Endurance exercise has been shown to activate the PGC-1α gene in human skeletal muscle. [11]

  5. Mitochondrial fatty acid synthesis - Wikipedia

    en.wikipedia.org/wiki/Fatty_acid_synthesis

    Mitochondrial fatty acid synthesis is essential for cellular respiration and mitochondrial biogenesis. [31] A role as a mediator in intracellular signal transduction is also assumed, as the levels of bioactive lipids, such as lysophospholipids and sphingolipids , correlate with mtFASII.

  6. Mitophagy - Wikipedia

    en.wikipedia.org/wiki/Mitophagy

    These faulty mitochondria can further deplete the cell of ATP, increase production of ROS, and release proapoptopic proteins such as caspases. Because of the danger of having damaged mitochondria in the cell, the timely elimination of damaged and aged mitochondria is essential for maintaining the integrity of the cell.

  7. Mitogen - Wikipedia

    en.wikipedia.org/wiki/Mitogen

    TGF-𝝱 works by binding to cell-surface receptors and activating the Smad gene regulatory proteins. Smad proteins then trigger an increase in p15, which inhibits cyclin D1 and prevents cell cycle progression. In many cancers, there is a loss-of-function mutation in the Smad proteins, thus negating the entire anti-mitogenic pathway. [5]

  8. Mitochondrial theory of ageing - Wikipedia

    en.wikipedia.org/wiki/Mitochondrial_theory_of_ageing

    The mitochondrial free radical theory of ageing (MFRTA) proposes that free radicals produced by mitochondrial activity damage cellular components, leading to ageing. Free radicals damage mitochondria, which, according to the mitochondrial free radical theory of ageing, leads to ageing.

  9. Human mitochondrial genetics - Wikipedia

    en.wikipedia.org/wiki/Human_mitochondrial_genetics

    The human mitochondrial genome is the entirety of hereditary information contained in human mitochondria. Mitochondria are small structures in cells that generate energy for the cell to use, and are hence referred to as the "powerhouses" of the cell. Mitochondrial DNA (mtDNA) is not transmitted through nuclear DNA (nDNA).