Mucosa-associated lymphoid tissue

Mucosa-associated lymphoid tissue
Details
SystemLymphatic system
Identifiers
Acronym(s)MALT 2
FMA62819
Anatomical terminology

The mucosa-associated lymphoid tissue (MALT), also called mucosa-associated lymphatic tissue, is a diffuse system of small concentrations of lymphoid tissue found in various submucosal membrane sites of the body, such as the gastrointestinal tract, nasopharynx, thyroid, breast, lung, salivary glands, eye, and skin. MALT is populated by lymphocytes such as T cells and B cells, as well as plasma cells and macrophages, each of which is well situated to encounter antigens passing through the mucosal epithelium. In the case of intestinal MALT, M cells are also present, which sample antigen from the lumen and deliver it to the lymphoid tissue. MALT constitute about 50% of the lymphoid tissue in human body. Immune responses that occur at mucous membranes are studied by mucosal immunology.

Categorization

The components of MALT

The components of MALT are sometimes subdivided into the following:

It can be also distinguished by level of organization of the tissue:

  • O-MALT (organized mucosa-associated lymphatic tissue); specifically, the tonsils of Waldeyer's tonsillar ring are O-MALT.
  • D-MALT (diffuse mucosa-associated lymphatic tissue); MALT that is not organized as a separately macroscopically anatomically identifiable mass, tissue or organ (such as the aforementioned O-MALT) is diffuse MALT.

Role in disease

MALT plays a role in regulating mucosal immunity. It may be the site of lymphomas, usually a non-Hodgkin lymphoma. A specific entity is the marginal zone B-cell lymphoma (a subtype of which is termed MALT lymphoma). Certain subtypes of marginal zone B cell lymphomas such as those occurring in the stomach are commonly caused by Helicobacter pylori infection. Peyer's Patches, groupings of lymphoid follicles in the mucus membrane, monitor the GALT closely to regulate pathogens that traverse through the area. Due to function of M cells in Peyer's Patches, adherence and transport of antigens across a single layer of epithelial cells, it's likely that dysfunction in these structures allow and entry point to pathogens.


This page was last updated at 2023-06-12 12:26 UTC. Update now. View original page.

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