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Entamoeba histolytica (PCR): the pathway in the body

Entamoeba histolytica (PCR) is part of the pathway “Intestinal parasites”. This page shows the whole pathway; the station of Entamoeba histolytica (PCR) is highlighted.

Where this laboratory value sits: Forms in the stool — DNA detected by PCR. Most of these organisms form a wall again and leave the body with the stool. A PCR test looks for sections of their DNA there and so shows which species is present. Source 1, 4, 5

In brief

Intestinal parasites are single-celled organisms such as Giardia lamblia, Entamoeba histolytica or Cryptosporidium. They reach the gut as a dormant form, hatch there and later shed new cysts with the stool.

10 stations · 10 sources
ORYRoute through the gutRecognition by the bodyStomach acidBile saltsEncystationcontact with the mucosaCysts, oocystsresting forms with a wallExcystationstomach and small intestineActive formtrophozoite or sporozoiteAttachmentto the gut surfaceMultiplicationdivision in the gutForms in the stoolDNA detected by PCRMucosamucus and epithelial cellsDendritic cellspresent fragmentsT cellsin the gut wallIgA in the gutantibodies in the mucus

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The pathway step by step

  1. Cysts, oocysts → Excystation · Stomach acid, Bile salts Stomach acid, body warmth and bile salts are the signal to open the wall. The motile forms hatch in the small intestine. Source 1, 2
  2. Excystation → Active form Giardia lamblia, Entamoeba histolytica, Blastocystis and Dientamoeba fragilis live in the gut as trophozoites. In Cryptosporidium and Cyclospora, the hatching form is called a sporozoite. Source 1, 2, 5, 6
  3. Active form → Attachment Giardia holds on to the cell surface with an adhesive disc. Entamoeba binds to sugar chains of the mucus layer via a lectin. Cryptosporidium and Cyclospora enter the gut cell. Source 1, 2, 3
  4. Attachment → Multiplication In the gut, the single-celled organisms divide. Cryptosporidium and Cyclospora pass through several forms in succession, including a sexual stage. Source 2, 4
  5. Multiplication → Forms in the stool Encystation Most of these organisms form a wall again and leave the body with the stool. A PCR test looks for sections of their DNA there and so shows which species is present. Source 1, 4, 5
  6. Mucosa → Dendritic cells Dendritic cells pick up fragments of the organisms and present them to T cells in the lymphoid tissue of the gut wall. Source 7
  7. Dendritic cells → T cells T cells coordinate the response: they release signalling molecules that attract further immune cells, and they prompt B cells to form antibodies. Source 7
  8. T cells → IgA in the gut B cells form antibodies of the IgA class. These are released through the gut wall into the mucus, where they bind to the surface of the organisms. Source 7

Cofactors in this pathway

Sources

  1. Einarsson E, Ma'ayeh S, Svärd SG. An up-date on Giardia and giardiasis. Curr Opin Microbiol 2016 · PubMed 27501461
  2. Tzipori S, Griffiths JK. Natural history and biology of Cryptosporidium parvum. Adv Parasitol 1998 · PubMed 9554069
  3. Mann BJ. Structure and function of the Entamoeba histolytica Gal/GalNAc lectin. Int Rev Cytol 2002 · PubMed 12049210
  4. Almeria S, Cinar HN, Dubey JP. Cyclospora cayetanensis and Cyclosporiasis: An Update. Microorganisms 2019 · PubMed 31487898
  5. Stark D, Barratt J, Chan D et al. Dientamoeba fragilis, the Neglected Trichomonad of the Human Bowel. Clin Microbiol Rev 2016 · PubMed 27170141
  6. Tan KS. New insights on classification, identification, and clinical relevance of Blastocystis spp. Clin Microbiol Rev 2008 · PubMed 18854485
  7. Fink MY, Singer SM. The Intersection of Immune Responses, Microbiota, and Pathogenesis in Giardiasis. Trends Parasitol 2017 · PubMed 28830665
  8. Luján HD, Mowatt MR, Byrd LG et al. Cholesterol starvation induces differentiation of the intestinal parasite Giardia lamblia. Proc Natl Acad Sci U S A 1996 · PubMed 8755526
  9. Mora JR, von Andrian UH. Role of retinoic acid in the imprinting of gut-homing IgA-secreting cells. Semin Immunol 2009 · PubMed 18804386
  10. Shirakawa AK, Nagakubo D, Hieshima K et al. 1,25-dihydroxyvitamin D3 induces CCR10 expression in terminally differentiating human B cells. J Immunol 2008 · PubMed 18292499

Whole pathway: Intestinal parasites

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