Characterization of the diffuse mucosal associated lymphoid tissue of feline small intestine

P Roccabianca1, J C Woo, P F Moore

  • 1Istituto di Anatomia Patologica Veterinaria e Patologia Aviare, Facoltaí di Medicina Veterinaria, Via Celoria n. 10, 20133, Milan, Italy.

Insights

This study characterizes feline intestinal mucosal associated lymphoid tissue (MALT), revealing key lymphocyte populations. These findings establish the cat as a valuable model for human intestinal diseases involving lymphoid tissue.

Area of Science:

  • Immunology
  • Veterinary Medicine
  • Gastroenterology

Background:

  • Feline intestinal mucosal associated lymphoid tissue (MALT) characterization is crucial for understanding feline intestinal diseases.
  • The cat serves as a potential animal model for human diseases affecting intestinal lymphoid tissue, including inflammatory bowel disease and lymphomas.

Purpose of the Study:

  • To morphologically and phenotypically characterize the normal small intestinal diffuse MALT in cats.
  • To provide reference values for feline intestinal lymphocytes and establish the cat as a model for human intestinal diseases.

Main Methods:

  • Flow cytometry and cytology were used on isolated intestinal leukocytes from intra-epithelial (IEC) and lamina propria compartments in 22 SPF cats.
  • Immunohistology was performed on tissue samples from the feline duodenum, jejunum, and ileum.
  • Analysis included leukocyte distribution and phenotypic characteristics within feline MALT.

Main Results:

  • The IEC was dominated by lymphocytes (>85%), with elevated CD8 alpha+ (40%) and CD4-/CD8- (44%) populations, and a low CD4:CD8 ratio (0.25).
  • The lamina propria compartment (LPC) showed reduced CD8 alpha+ (28%) and increased CD4+ (27%) lymphocytes, with a low CD4:CD8 ratio (1.0).
  • MHC class II expression was lower in feline MALT compared to peripheral lymphoid compartments.

Conclusions:

  • The leukocyte distribution and phenotypic characteristics of feline diffuse MALT are largely similar to murine, rat, and human counterparts.
  • This study provides essential reference values for future research on feline intestinal lymphocytes.
  • The findings support the use of cats as an animal model for studying intestinal diseases.

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