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  2. Dextrin - Wikipedia

    en.wikipedia.org/wiki/Dextrin

    Dextrins are mixtures of polymers of D-glucose units linked by α-(1→4) or α-(1→6) glycosidic bonds. Dextrins can be produced from starch using enzymes like amylases, as during digestion in the human body and during malting and mashing in beer brewing [3] or by applying dry heat under acidic conditions (pyrolysis or roasting).

  3. Intravenous sugar solution - Wikipedia

    en.wikipedia.org/wiki/Intravenous_sugar_solution

    Intravenous sugar solution, also known as dextrose solution, is a mixture of dextrose (glucose) and water. [1] It is used to treat low blood sugar or water loss without electrolyte loss. [ 2 ] Water loss without electrolyte loss may occur in fever , hyperthyroidism , high blood calcium , or diabetes insipidus . [ 2 ]

  4. Oral glucose gel - Wikipedia

    en.wikipedia.org/wiki/Oral_glucose_gel

    Oral glucose gel is an over-the-counter medication, consisting primarily of dextrose and water, along with small amounts of other compounds.It is frequently used by people with diabetes and those with hypoglycaemia to raise their blood glucose when it becomes dangerously low.

  5. 10 Sugar Alternatives to Try This Year - AOL

    www.aol.com/10-sugar-alternatives-try-165700546.html

    3. Honey. Type: Natural sweetener. Potential benefits: Honey contains more nutrients than table sugar, including antioxidants, minerals, and vitamins.It’s also easier to digest than table sugar ...

  6. Maltodextrin - Wikipedia

    en.wikipedia.org/wiki/Maltodextrin

    The digestion-resistant maltodextrin ingredient has several properties exploited in food or beverage manufacturing: it is a low-moisture (5% water), free-flowing, fine white powder that disperses readily in water; it is clear in solution with low viscosity; it is odorless, slightly acidic, and has a bland flavor; it is 90% dietary fiber. [3]

  7. Human digestive system - Wikipedia

    en.wikipedia.org/wiki/Human_digestive_system

    The liver has many functions some of which are important to digestion. The liver can detoxify various metabolites; synthesise proteins and produce biochemicals needed for digestion. It regulates the storage of glycogen which it can form from glucose (glycogenesis). The liver can also synthesise glucose from certain amino acids. Its digestive ...

  8. Alpha-glucosidase inhibitor - Wikipedia

    en.wikipedia.org/wiki/Alpha-glucosidase_inhibitor

    Since alpha-glucosidase inhibitors prevent the degradation of complex carbohydrates into glucose, the carbohydrates will remain in the intestine. In the colon, bacteria will digest the complex carbohydrates, thereby causing gastrointestinal side effects such as flatulence and diarrhea. Since these effects are dose-related, it is generally ...

  9. Hydrolysis - Wikipedia

    en.wikipedia.org/wiki/Hydrolysis

    When a carbohydrate is broken into its component sugar molecules by hydrolysis (e.g., sucrose being broken down into glucose and fructose), this is recognized as saccharification. [2] Hydrolysis reactions can be the reverse of a condensation reaction in which two molecules join into a larger one and eject a water molecule. Thus hydrolysis adds ...