GUT DCS IN IBD · Intestinal dendritic cells and gut T-cell homing in inflammatory bowel diseases
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2009-05-01 → 2011-04-30
- Финансиране от ЕС
- 180 784 €
- Участници
- 1
- Схема
- MC-IEF
Линиите свързват координатора с партньорите.
Накратко на български
Дендритните клетки в червата определят как Т-клетките на имунната система се насочват към конкретни тъкани. Разбирането на този процес помага да се разбере как се поддържа имунният баланс при здрави хора и какво се променя при възпалителни заболявания на червата.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Periodic Report Summary - GUT DCS IN IBD (Intestinal dendritic cells and gut T-cell homing in inflammatory bowel diseases)
DC from different tissues had different phenotype and stimulatory capacity for T-cells. Those differences included variations not only in their own tissue-homing profile but also their capacity to prime responding T-cells with a differential tissue-homing profile. DC from tissues exposed to high antigen doses (like intestinal or epidermal DC) had a lower stimulatory capacity compared to their counterparts from other tissues (blood or dermis, respectively) providing therefore a mechanisms helping to maintain immune homeostasis in tissues which are exposed to a high antigen load. When DC were cultured 'in vitro' in the absence of other factors in time they lost the expression of their homing markers. Thus, monocyte-derived DC (which had been cultured in vitro for at least five days in the presence of IL-4 and GM-CSF) did not express any of the gut and skin homing markers studied. Many authors have recently suggested that the tissue of residence conditions the phenotype and function of DC providing an explanation as to why DC lose their homing profile when they are cultured 'in vitro' in the absence of a physiological microenvironment. We wondered therefore if we could induce a homeostatic gut-like' phenotype in human blood enriched DC. To that end, blood DC were cultured 'in vitro' in the presence of a colonic microenvironment from healthy controls. Following conditioning with an intestinal microenvironment, human blood DC acquired a homeostatic 'gut-like' phenotype with all the associated phenotypic and functional characteristics of resident intestinal DC including a lower stimulatory capacity for T-cells as well as a gut-homing priming capacity on T-cells that they stimulated. On the contrary, if human blood enriched DC were conditioned with an IBD microenvironment they failed to acquire a homeostatic phenotype and became more stimulatory for T-cells. Interestingly, T-cells stimulated by IBD-conditioned DC failed to acquire a gut-homing restricted phenotype and on the contrary acquired an aberrant skin-homing profile providing a molecular explanation for the development of extra-intestinal manifestation (usually skin-associated) in some IBD patients. We next aimed to identify which factors in healthy controls mediate the acquisition of a homeostatic gut-like phenotype by DC and which presumably are lost or masked in IBD patients. We have identified that both retinoic acid (RA) and TGFbeta have complementary roles in those processes. Intestinal RA controls the acquisition of a gut-homing profile both by DC and T-cells that they stimulate, although it did not have an effect on their stimulatory capacity. Intestinal TGFbeta on the contrary induced a lower stimulatory phenotype on conditioned DC although it did not participate in the mechanisms which control the gut-homing properties. Finally, if human blood enriched DC were pre-pulsed with RA prior to conditioning with an IBD microenvironment acquisition of a higher stimulatory phenotype as well as the capacity to generate aberrant skin-homing T-cells was abrogated; these finding provide new insights into the development of potential new tissue-specific therapies to prevent the inflammatory activities in the gut in IBD patients. Finally, we have identified that the intestinal microbiota have a direct and essential role in controlling intestinal homeostasis through their capacity to modulate the phenotype of intestinal DC towards a regulatory or homeostatic phenotype. That unexpected finding is currently under study with some of our collaborators. Our results have revealed that both TGFb and retinoic acid have a central role in humans controlling intestinal immune homeostasis. That evidence may help development of new tissue-specific therapies in IBD patients based in immuno-nutrition and / or development of DC vaccines.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Inflamatory bowel diseases (IBD) are systemic diseases characterized by intestinal inflamation and extra-intestinal manifestations. The compartimentalisation of inflammatory processes is driven by immunological mechanisms, in particular pertaining to homing and trafficking of immune cells. Intestinal Dendritic Cells (DC) are professional antigen presenting cells that recognize antigens and direct subsequent immune response. DC also dictate the type of T-cell immune response (e.g. pro-inflamatory or regulatory). In health, intestinal DC contribute to induction of immunological tolerance and control of immune activity in the gut. The Host Laboratory has provided evidence for the importance of immune compartmentalisation in IBD patients, since they have demonstrated an increased number of DC in inflamed mucosa of patients with IBD, increased activation of DC, and increased expression of both immune receptors and increased production of pathologically-related cytokines. Also, gut-homing DCs mark T-cells they stimulate with gut-homing markers. HYPOTHESIS In IBD, aberrant DC populations drive homing and functions of pathogenic T cells. AIMS 1. To examine changes in IBD (with and without extraintestinal manifestations) in the homing marker expression of DC 2. To identify the homing and functional properties of T-cells stimulated by subpopulations of DC in IBD. ANTICIPATED OUTCOMES In inflamed tissue, intestinal DC will have different homing markers and/or changed capacity to induce “gut homing” T cells. These changed profiles could be linked with different phenotypes of disease in patients with IBD. A greater understanding of this “post-code” system in DC and T-cells may lead to refinement of current therapies and development of more rational therapies for diseases at different anatomical sites and for different diseases, since it would be possible targeting the more easily accessible blood DC and T-cells destined to produce inflammation.
Оригинален текст от CORDIS (на английски).
Участници
- IMPERIAL COLLEGE OF SCIENCE TECHNOLOGY AND MEDICINE · LondonКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
