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🍽️ 1,2-dithiolane-3-pentanoic acid {a-Lipoic acid (ALA)}

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  1. Energy Production: Alanine is involved in the glucose-alanine cycle, a metabolic pathway that helps transport amino groups from muscle tissue to the liver. This process helps convert pyruvate (a product of glucose metabolism) into glucose, which can then be used for energy production, particularly during prolonged exercise or fasting.

  2. Muscle Growth and Repair: As one of the building blocks of protein, alanine is essential for muscle growth, repair, and maintenance. It contributes to the synthesis of muscle tissue and helps prevent muscle breakdown, making it important for athletes, bodybuilders, and individuals undergoing intense physical training.

  3. Blood Sugar Regulation: Alanine can serve as a precursor for glucose synthesis in the liver through gluconeogenesis. This process helps maintain blood sugar levels within a normal range, especially during fasting or periods of low carbohydrate intake. Consequently, alanine may have implications for individuals with diabetes or hypoglycemia.

  4. Immune Function: Some research suggests that alanine may play a role in supporting immune function. It is involved in the production of antibodies and immune cells, which help defend the body against infections and diseases. Adequate alanine levels may contribute to a healthy immune response.

  5. Brain Health: Alanine can cross the blood-brain barrier and serve as a precursor for neurotransmitters such as glutamate, which is essential for brain function and neurotransmission. While more research is needed, some studies suggest that alanine supplementation may have neuroprotective effects and potentially benefit cognitive function.

  6. Liver Health: The metabolism of alanine in the liver is linked to various metabolic pathways involved in detoxification and the synthesis of important molecules such as glutathione. Maintaining adequate alanine levels may support liver health and function, although more research is needed in this area.

  7. Wound Healing: As a component of protein synthesis and tissue repair, alanine may play a role in wound healing processes. Adequate protein intake, including alanine-rich sources, is essential for proper wound healing and tissue regeneration.

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Data Contradictions β€” Limits of Certainity

Impacted of 1,2-dithiolane-3-pentanoic acid {a-Lipoic acid (ALA)} On Probiotics

Bacteria Impacted by 1,2-dithiolane-3-pentanoic acid {a-Lipoic acid (ALA)}

We extend modifiers to include items that changes the parent and child taxa. I.e. for a species, that would be the genus that is belongs to and the strains in the species.

Impact of 1,2-dithiolane-3-pentanoic acid {a-Lipoic acid (ALA)} on Conditions from US National Library of Medicine

A higher number indicates impact on more bacteria associated with the condition and confidence on the impact.

We have X bacteria high and Y low reported. We find that the modifier reduces some and increases other of these two groups. We just tally: X|reduces + Y|Increase = Positive   X|increases + Y|decrease = Negative.

Benefit Ratio:
Numbers above 0 have increasing positive effect.
Numbers below 0 have increasing negative effect.

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