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digestion

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Also known as GO:0007586

Digestion is the breakdown of large insoluble food compounds into small water-soluble components so that they can be absorbed into the blood plasma. In certain organisms, these smaller substances are absorbed through the small intestine into the blood stream. Digestion is a form of catabolism that is often divided into two processes based on how food is broken down: mechanical and chemical digestion. The term mechanical digestion refers to the physical breakdown of large pieces of food into smaller pieces which can subsequently be accessed by digestive enzymes. Mechanical digestion takes place

AI overview

Digestion is the process of breaking down large food particles into smaller, water-soluble components that your body can absorb into the bloodstream. This matters because it allows your body to extract and use the nutrients from the food you eat.

AI-generated from the Wikipedia summary — may contain errors.

Key facts

Anatomy.Name
Digestive system
Anatomy.Latin
systema digestorium

via Wikipedia infobox

Research

1,724,735 papers

via PubMed

Wikidata facts

Image
Blausen 0316 DigestiveSystem.png
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native label
systema digestorium
Commons category
Digestion
Sources (6)

via Wikidata · CC0

~28 min read

Article

29 sections
Contents
  • Digestive system
  • Secretion systems
  • Channel transport system
  • Molecular syringe
  • Conjugation machinery
  • Release of outer membrane vesicles
  • Gastrovascular cavity
  • Phagosome
  • Specialised organs and behaviours
  • Beaks
  • Tongue
  • Teeth
  • Crop
  • Abomasum
  • Specialised behaviours
  • In earthworms
  • Overview of vertebrate digestion
  • Human digestion process
  • Neural and biochemical control mechanisms
  • Breakdown into nutrients
  • Protein digestion
  • Carbohydrate digestion
  • DNA and RNA digestion
  • Non-destructive digestion
  • Digestive hormones
  • Significance of pH
  • See also
  • References
  • External links

Digestion is the breakdown of large insoluble food compounds into small water-soluble components so that they can be absorbed into the blood plasma. In certain organisms, these smaller substances are absorbed through the small intestine into the blood stream. Digestion is a form of catabolism that is often divided into two processes based on how food is broken down: mechanical and chemical digestion. The term mechanical digestion refers to the physical breakdown of large pieces of food into smaller pieces which can subsequently be accessed by digestive enzymes. Mechanical digestion takes place in the mouth through mastication and in the small intestine through segmentation contractions. In chemical digestion, enzymes break down food into the small compounds that the body can use.

In the human digestive system, food enters the mouth and mechanical digestion of the food starts by the action of mastication (chewing), a form of mechanical digestion, and the wetting contact of saliva. Saliva, a liquid secreted by the salivary glands, contains salivary amylase, an enzyme which starts the digestion of starch in the food. The saliva also contains mucus, which lubricates the food; the electrolyte hydrogencarbonate (), which provides the ideal conditions of pH for amylase to work; and other electrolytes (, , ). About 30% of starch is hydrolyzed into disaccharide in the oral cavity (mouth). After undergoing mastication and starch digestion, the food will be in the form of a small, round slurry mass called a bolus. It will then travel down the esophagus and into the stomach by the action of peristalsis. Gastric juice in the stomach starts protein digestion. Gastric juice mainly contains hydrochloric acid and pepsin. In infants and toddlers, gastric juice also contains rennin to digest milk proteins. As the first two chemicals may damage the stomach wall, mucus and bicarbonates are secreted by the stomach. They provide a slimy layer that acts as a shield against the damaging effects of chemicals like concentrated hydrochloric acid while also aiding lubrication. Hydrochloric acid provides acidic pH for pepsin. At the same time protein digestion is occurring, mechanical mixing occurs by peristalsis, which is waves of muscular contractions that move along the stomach wall. This allows the mass of food to further mix with the digestive enzymes. Pepsin breaks down proteins into peptides or proteoses, which are further broken down into dipeptides and amino acids by enzymes in the small intestine. Studies suggest that increasing the number of chews per bite increases relevant gut hormones and may decrease self-reported hunger and food intake.

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