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  2. Cell damage - Wikipedia

    en.wikipedia.org/wiki/Cell_damage

    Cell damage (also known as cell injury) is a variety of changes of stress that a cell suffers due to external as well as internal environmental changes. Amongst other causes, this can be due to physical, chemical, infectious, biological, nutritional or immunological factors. Cell damage can be reversible or irreversible.

  3. Cellular stress response - Wikipedia

    en.wikipedia.org/wiki/Cellular_stress_response

    Cancer cells may become dependent on stress response mechanisms that involve lysosomal macromolecule degradation, or even autophagy that recycles entire organelles [12] However, tumor cells exhibit therapeutic stress resistance-associated secretory phenotype involving extracellular vesicles (EVs) such as oncosomes and heat shock proteins. [13]

  4. Stress relaxation - Wikipedia

    en.wikipedia.org/wiki/Stress_relaxation

    The extracellular matrix and most tissues are stress relaxing, and the kinetics of stress relaxation have been recognized as an important mechanical cue that affects the migration, proliferation, and differentiation of embedded cells. [2] Stress relaxation calculations can differ for different materials: To generalize, Obukhov uses power ...

  5. Cellular adaptation - Wikipedia

    en.wikipedia.org/wiki/Cellular_adaptation

    Metaplasia occurs when a cell of a certain type is replaced by another cell type, which may be less differentiated. It is a reversible process thought to be caused by stem cell reprogramming. Stem cells are found in epithelia and embryonic mesenchyme of connective tissue. A prominent example of metaplasia involves the changes associated with ...

  6. Cachexia - Wikipedia

    en.wikipedia.org/wiki/Cachexia

    Identification, treatment, and research of cachexia have historically been limited by the lack of a widely accepted definition of cachexia. In 2011, an international consensus group adopted a definition of cachexia as "a multifactorial syndrome defined by an ongoing loss of skeletal muscle mass (with or without loss of fat mass) that can be partially but not entirely reversed by conventional ...

  7. Exertional rhabdomyolysis - Wikipedia

    en.wikipedia.org/wiki/Exertional_rhabdomyolysis

    The mitochondria are unable to produce enough ATP to power the cell properly. Reduction in ATP production impairs the cells' ability to extract calcium from the muscle cell. Motor endplate of a person with rhabdomyolysis. The ion imbalance causes calcium-dependent enzymes to activate which break down muscle proteins even further. [8]

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  9. Chronic stress - Wikipedia

    en.wikipedia.org/wiki/Chronic_stress

    Prolonged stress can disturb the immune, digestive, cardiovascular, sleep, and reproductive systems. [17] For example, it was found that: Chronic stress reduces resistance of infection and inflammation, and might even cause the immune system to attack itself. [27] Stress responses can cause atrophy of muscles and increases in blood pressure. [28]