4.6 Article

Infection with the enteric pathogen C. rodentium promotes islet-specific autoimmunity by activating a lymphatic route from the gut to pancreatic lymph node

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MUCOSAL IMMUNOLOGY
卷 15, 期 3, 页码 471-479

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SPRINGERNATURE
DOI: 10.1038/s41385-022-00490-2

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资金

  1. NovoNordisk Foundation [NNF18OC0033880]
  2. Academy of Finland [285503, 308223]
  3. InFLAMES Flagship Programme of the Academy of Finland [337530]
  4. Instrumentarium Research Foundation [200056]
  5. Diabetes Research Foundation [200018]
  6. Emil Aaltonen Foundation [210181]
  7. Paivikki and Sakari Sohlberg Foundation
  8. Turku University Hospital
  9. Academy of Finland (AKA) [285503, 308223, 308223, 285503] Funding Source: Academy of Finland (AKA)

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C. rodentium enhances the activation of islet-specific T-cells by migrating from the colon to the pancreatic lymph nodes through dendritic cells and lymph itself.
In nonobese diabetic (NOD) mice, C. rodentium promotes priming of islet-specific T-cells in pancreatic lymph nodes (PaLN), which is a critical step in initiation and perpetuation of islet-autoimmunity. To investigate mechanisms by which C. rodentium promotes T-cell priming in PaLN, we used fluorescent imaging of lymphatic vasculature emanating from colon, followed dendritic cell (DC) migration from colon using photoconvertible-reporter mice, and evaluated the translocation of bacteria to lymph nodes with GFP-C. rodentium and in situ hybridization of bacterial DNA. Fluorescent dextran injected in the colon wall accumulated under subcapsular sinus of PaLN indicating the existence of a lymphatic route from colon to PaLN. Infection with C. rodentium induced DC migration from colon to PaLN and bacterial DNA was detected in medullary sinus and inner cortex of PaLN. Following infection with GFP-C. rodentium, fluorescence appeared in macrophages and gut-derived (CD103+) and resident (CD103-/XCR1+) DC, indicating transportation of bacteria from colon to PaLN both by DC and by lymph itself. This induced proinflammatory cytokine transcripts, activation of DC and islet-specific T-cells in PaLN of NOD mice. Our findings demonstrate the existence of a direct, enteric pathogen-activated route for lymph, cells, and bacteria from colon, which promotes activation of islet-specific T-cells in PaLN.

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