Protection from T cell-dependent colitis by the helminth-derived immunomodulatory mimic of transforming growth factor-β, Hp -TGM.
Danielle J SmythMadeleine P J WhiteChris J C JohnstonAnne-Marie DonachieMarta Campillo PovedaHenry J McSorleyRick M MaizelsPublished in: Discovery immunology (2023)
In animal models of inflammatory colitis, pathology can be ameliorated by several intestinal helminth parasites, including the mouse nematode Heligmosomoides polygyrus . To identify parasite products that may exert anti-inflammatory effects in vivo , we tested H. polygyrus excretory-secretory (HES) products, as well as a recombinantly expressed parasite protein, transforming growth factor mimic (TGM), that functionally mimics the mammalian immunomodulatory cytokine TGF-β. HES and TGM showed a degree of protection in dextran sodium sulphate-induced colitis, with a reduction in inflammatory cytokines, but did not fully block the development of pathology. HES also showed little benefit in a similar acute trinitrobenzene sulphonic acid-induced model. However, in a T cell transfer-mediated model with recombination activation gene (RAG)-deficient mice, HES-reduced disease scores if administered throughout the first 2 or 4 weeks following transfer but was less effective if treatment was delayed until 14 days after T cell transfer. Recombinant TGM similarly dampened colitis in RAG-deficient recipients of effector T cells, and was effective even if introduced only once symptoms had begun to be manifest. These results are a promising indication that TGM may replicate, and even surpass, the modulatory properties of native parasite HES.
Keyphrases
- transforming growth factor
- plasmodium falciparum
- epithelial mesenchymal transition
- toxoplasma gondii
- trypanosoma cruzi
- ulcerative colitis
- liver failure
- genome wide
- dna damage
- oxidative stress
- signaling pathway
- regulatory t cells
- gene expression
- electron transfer
- copy number
- aortic dissection
- small molecule
- immune response
- dna methylation
- amino acid
- protein protein
- transcription factor
- acute respiratory distress syndrome
- extracorporeal membrane oxygenation