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Application of a Mouse Ligated Peyer’s Patch Intestinal Loop Assay to Evaluate Bacterial Uptake by M cells
Published on: December 17, 2011
Mycobacterium avium subspecies paratuberculosis targets M cells in enteroid-derived monolayers through interactions
Grace Baruta1,2, Kyle L Flannigan1,2, Laurie Alston1,2
1Department of Physiology and Pharmacology, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada.
Abstract:
Paratuberculosis is an infectious disease caused by the bacterium, Mycobacterium avium subspecies paratuberculosis (MAP). MAP infection of ruminants triggers progressive wasting disease characterized by granulomatous lymphadenitis, enteritis, and severe intestinal pathology that often requires early culling of the animal. The resulting economic burden is significant, and MAP exposure in the workplace constitutes a significant zoonotic risk. Although it has been established that the MAP propagates within resident immune cells, less is known about how it traverses the epithelium. It is currently thought that MAP infects the small intestinal epithelium by targeting both enterocytes and M cells, with a potential tropism for the latter. In the current study, we developed and validated an enteroid-based in vitro assay containing functional M cells to identify the target cells for MAP's entry. Upon exposure to MAP, the bacteria were detected within both enterocytes and M cells; however, quantitative image analysis revealed significant tropism for the latter. Complementary studies using the Caco-2/Raji-B coculture system provided similar results. Since other mycobacteria have been shown to initiate cell attachment and entry by using a fibronectin-bridging process, we tested whether these interactions were involved in MAP's targeting of M cells. We found that MAP's M cell tropism was enhanced by fibronectin and that this effect was abolished when monolayers were pretreated with an integrin-blocking peptide. Our data demonstrate that MAP preferentially targets M cells and that this involves a fibronectin-bridging process. Furthermore, our study supports the utility of M cell-containing enteroids to study host-pathogen interaction at the intestinal epithelium.NEW & NOTEWORTHY We developed and validated a novel enteroid-based in vitro infection model with functional M cells and incorporated leading-edge imaging approaches to determine how MAP interacts with the intestinal epithelium. Using this model, we found that MAP preferentially enters M cells and that this process is enhanced by fibronectin opsonization and interactions with M cell-associated b1 integrins-the so-called fibronectin bridging mechanism that is used by other Mycobacterium to mediate cell attachment and entry.
Insights
Mycobacterium avium subspecies paratuberculosis (MAP) preferentially infects M cells in the intestinal epithelium. This entry mechanism involves fibronectin bridging, highlighting a novel in vitro model for studying host-pathogen interactions.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Paratuberculosis is an infectious wasting disease in ruminants caused by Mycobacterium avium subspecies paratuberculosis (MAP).
- MAP infection poses economic challenges and zoonotic risks, with its epithelial entry mechanism poorly understood.
- Current understanding suggests MAP targets enterocytes and M cells, with a potential preference for M cells.
Purpose of the Study:
- To develop and validate an enteroid-based in vitro model to identify MAP's target cells in the intestinal epithelium.
- To elucidate the mechanism by which MAP interacts with and enters intestinal epithelial cells.
- To investigate the role of fibronectin and integrins in MAP's M cell tropism.
Main Methods:
- Development and validation of an enteroid-based in vitro assay with functional M cells.
- Exposure of the model to MAP and subsequent quantitative image analysis to determine bacterial entry.
- Complementary studies using Caco-2/Raji-B coculture system.
- Testing the effect of fibronectin and integrin-blocking peptides on MAP-M cell interactions.
Main Results:
- MAP was detected within both enterocytes and M cells, with a significant tropism for M cells.
- The fibronectin-bridging process, involving fibronectin and integrins, was identified as a key mechanism for MAP's M cell entry.
- The M cell tropism of MAP was enhanced by fibronectin and abolished by integrin blockade.
Conclusions:
- MAP preferentially targets and enters M cells in the intestinal epithelium.
- The fibronectin-bridging mechanism plays a crucial role in MAP's M cell tropism.
- M cell-containing enteroids represent a valuable in vitro model for studying host-pathogen interactions at the intestinal barrier.
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