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  2. Lactic acid fermentation - Wikipedia

    en.wikipedia.org/wiki/Lactic_acid_fermentation

    Lactic acid fermentation is a metabolic process by which glucose or other six-carbon sugars (also, disaccharides of six-carbon sugars, e.g. sucrose or lactose) are converted into cellular energy and the metabolite lactate, which is lactic acid in solution.

  3. Lactic acidosis - Wikipedia

    en.wikipedia.org/wiki/Lactic_acidosis

    Certain turtle species have been found to be capable of tolerating high levels of lactic acid without experiencing the effects of lactic acidosis. Painted turtles hibernate buried in mud or underwater and do not resurface for the entire winter. As a result, they rely on lactic acid fermentation to provide the majority of their energy needs. [23]

  4. Anaerobic glycolysis - Wikipedia

    en.wikipedia.org/wiki/Anaerobic_glycolysis

    Pyruvate is the terminal electron acceptor in lactic acid fermentation. When sufficient oxygen is not present in the muscle cells for further oxidation of pyruvate and NADH produced in glycolysis, NAD+ is regenerated from NADH by reduction of pyruvate to lactate. [4] Lactate is converted to pyruvate by the enzyme lactate dehydrogenase. [3]

  5. Pasteur effect - Wikipedia

    en.wikipedia.org/wiki/Pasteur_effect

    Despite the bactericidal effects of ethanol, acidifying effects of fermentation, and low oxygen conditions of industrial alcohol production, bacteria that undergo lactic acid fermentation can contaminate such facilities because lactic acid has a low pKa of 3.86 to avoid decoupling the pH membrane gradient that supports regulated transport. [7]

  6. Cellular waste product - Wikipedia

    en.wikipedia.org/wiki/Cellular_waste_product

    Lactic acid fermentation is relatively inefficient. The waste products lactic acid and ethanol have not been fully oxidized and still contain energy, but it requires the addition of oxygen to extract this energy. [8] Generally, lactic acid fermentation occurs only when aerobic cells are lacking oxygen.

  7. Lactobacillus acidophilus - Wikipedia

    en.wikipedia.org/wiki/Lactobacillus_acidophilus

    Pathway by which glucose is converted to lactic acid as a means of energy production. L. acidophilus is a homofermentative anaerobic microorganism, meaning it only produces lactic acid as an end product of fermentation; and that it can only ferment hexoses (not pentoses) by way of the EMP pathway (glycolysis). [5]

  8. Fermentation theory - Wikipedia

    en.wikipedia.org/wiki/Fermentation_theory

    Even the human body carries out fermentation processes from time to time, such as during long-distance running; lactic acid will build up in muscles over the course of long-term exertion. Within the human body, lactic acid is the by-product of ATP -producing fermentation, which produces energy so the body can continue to exercise in situations ...

  9. Levilactobacillus brevis - Wikipedia

    en.wikipedia.org/wiki/Levilactobacillus_brevis

    Levilactobacillus brevis is a gram-positive, rod shaped species of lactic acid bacteria which is heterofermentative, creating CO 2, lactic acid and acetic acid or ethanol during fermentation. L. brevis is the type species of the genus Levilactobacillus (previously L. brevis group), which comprises 24 species.