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H₂ nach Laktose-Belastung: the pathway in the body

H₂ nach Laktose-Belastung is part of the pathway “Lactose digestion”. This page shows the whole pathway; the station of H₂ nach Laktose-Belastung is highlighted.

Where this laboratory value sits: Measurable in breath — basis of the breath test. This is why hydrogen can be measured in the breath after a portion of lactose. A rise shows that lactose has reached the large intestine. Source 1, 4

In brief

Lactose is milk sugar, a double sugar made of glucose and galactose. The enzyme lactase separates it in the small intestine; whatever reaches the colon unseparated is fermented by bacteria, among other things into hydrogen.

11 stations · 7 sources
ORYDigestion: small intestineIn the large intestineLactase (LPH)SGLT1, GLUT2sodiumGut bacteriaArchaeahydrogenmoves on to the colonLactose in foodsugar from milkGlucose and galactosethe two simple sugarsAbsorption into bloodvia the portal veinLactase gene (LCT)control in neighbouring geneLactose in the colonwhat remains unsplitBacteria fermentflora of the large intestineShort-chain fatty acidsacetate, propionate, butyrateHydrogen (H2)comes only from bacteriaInto blood and lungsa small part of the gasMethane (CH4)in some peopleMeasurable in breathbasis of the breath test

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The pathway step by step

  1. Lactose in food → Glucose and galactose Lactase (LPH) The enzyme lactase-phlorizin hydrolase sits on the outer brush border of the small intestinal cells and separates the two sugars from each other. Source 2
  2. Glucose and galactose → Absorption into blood SGLT1, GLUT2 · sodium Transporters carry both sugars into the intestinal cell and on into the blood. In the liver, galactose is converted into glucose-1-phosphate by three enzymes. Source 1
  3. Lactose in the colon → Bacteria ferment Gut bacteria Bacteria of the gut flora absorb the lactose and ferment it. This produces gases and short-chain fatty acids. Source 1
  4. Bacteria ferment → Short-chain fatty acids Besides the gases, short-chain fatty acids are formed. The cells of the colon wall absorb them and use butyrate as fuel. Source 1
  5. Bacteria ferment → Hydrogen (H2) Hydrogen is one of the fermentation gases. Human cells do not produce it; it comes exclusively from bacterial metabolism. Source 4
  6. Hydrogen (H2) → Methane (CH4) Archaea · hydrogen In some people, the large intestine is home to archaea that make methane from hydrogen and carbon dioxide. The share of hydrogen in the gas is then lower. Source 4
  7. Hydrogen (H2) → Into blood and lungs Part of the hydrogen passes from the gut into the blood and is released into the exhaled air in the lungs. Source 4
  8. Into blood and lungs → Measurable in breath This is why hydrogen can be measured in the breath after a portion of lactose. A rise shows that lactose has reached the large intestine. Source 1, 4

Cofactors in this pathway

Sources

  1. Misselwitz B, Butter M, Verbeke K et al. Update on lactose malabsorption and intolerance: pathogenesis, diagnosis and clinical management. Gut 2019 · PubMed 31427404
  2. Naim HY. Molecular and cellular aspects and regulation of intestinal lactase-phlorizin hydrolase. Histol Histopathol 2001 · PubMed 11332711
  3. Swallow DM. Genetics of lactase persistence and lactose intolerance. Annu Rev Genet 2003 · PubMed 14616060
  4. Di Stefano M, Mengoli C, Bergonzi M et al. Hydrogen breath test and intestinal gas production. Eur Rev Med Pharmacol Sci 2013 · PubMed 24443066
  5. Timson DJ. The molecular basis of galactosemia - Past, present and future. Gene 2016 · PubMed 26143117
  6. Beerens K, Soetaert W, Desmet T. UDP-hexose 4-epimerases: a view on structure, mechanism and substrate specificity. Carbohydr Res 2015 · PubMed 26162744
  7. Thauer RK, Bonacker LG. Biosynthesis of coenzyme F430, a nickel porphinoid involved in methanogenesis. Ciba Found Symp 1994 · PubMed 7842854

Whole pathway: Lactose digestion

Related pathways

As of 2026-09-16. Draft written by Claude to schema v2; sources checked in PubMed; expert approval pending
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