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  2. Blood sugar regulation - Wikipedia

    en.wikipedia.org/wiki/Blood_sugar_regulation

    The flat line is the optimal blood sugar level (i.e. the homeostatic set point). Blood sugar levels are balanced by the tug-of-war between 2 functionally opposite hormones, glucagon and insulin. Blood sugar levels are regulated by negative feedback in order to keep the body in balance.

  3. Glucose uptake - Wikipedia

    en.wikipedia.org/wiki/Glucose_uptake

    The high Km of GLUT2 allows for glucose sensing; rate of glucose entry is proportional to blood glucose levels. GLUT4 transporters are insulin sensitive, and are found in muscle and adipose tissue. As muscle is a principal storage site for glucose and adipose tissue for triglyceride (into which glucose can be converted for storage), GLUT4 is ...

  4. Gluconeogenesis - Wikipedia

    en.wikipedia.org/wiki/Gluconeogenesis

    The anti-diabetic drug metformin reduces blood glucose primarily through inhibition of gluconeogenesis, overcoming the failure of insulin to inhibit gluconeogenesis due to insulin resistance. [ 32 ] Studies have shown that the absence of hepatic glucose production has no major effect on the control of fasting plasma glucose concentration.

  5. What Happens to Your Body When You Cut Out Sugar - AOL

    www.aol.com/lifestyle/happens-body-cut-sugar...

    ShutterstockThe average American consumes 17 teaspoons of sugar a day, but the Dietary Guidelines for Americans 2020–2025 recommends thatAmericans keep their intake of added sugars to less than ...

  6. The Best Foods To Eat To Keep Your Blood Sugar Stable All Day

    www.aol.com/lifestyle/best-foods-eat-keep-blood...

    On the flip side, a diet high in added sugar, refined carbs, and saturated fat increases blood sugar and worsens insulin resistance, in turn, leading to type 2 diabetes, adds Palinski-Wade.

  7. Carbohydrate metabolism - Wikipedia

    en.wikipedia.org/wiki/Carbohydrate_metabolism

    Glucose (blood sugar) is distributed to cells in the tissues, where it is broken down via cellular respiration, or stored as glycogen. [3] [4] In cellular (aerobic) respiration, glucose and oxygen are metabolized to release energy, with carbon dioxide and water as endproducts. [2] [4]