BIF-PROTECTS · Bifidobacteria as a model system for host-microbe interaction
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2021-04-01 → 2023-03-31
- Финансиране от ЕС
- 196 591 €
- Участници
- 1
- Схема
- MSCA-IF
Линиите свързват координатора с партньорите.
Накратко на български
Бифидобактериите в червата се изследват като модел за взаимодействието между микробите и имунната система, например при новородени бебета. Това помага да се разбере как тези бактерии могат да намалят риска от тежки чревни заболявания и смъртност при недоносени деца.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Bifidobacteria as a model system for host-microbe interaction
Our bodies are home to a staggering collection of microbes with, in particular, the human gut containing up to 2 kilograms of microbial mass. In healthy individuals the interplay between the immune system and the microbiota prevents tissue-damaging inflammatory responses towards commensal bacterial species, while permitting immune responses against infectious microbes. Changes in the gut microbiome have been linked to perturbation of immune function and several gut disorders such as inflammatory bowel disease (IBD), irritable bowel syndrome, and necrotising enterocolitis (NEC). Conversely, commensal microorganisms with purported health-promoting effects (probiotics) have been heralded as potential therapeutics for several ailments, the importance of which is illustrated by the currently 1,341 registered clinical trials using probiotics (based on the ‘clinicaltrials.gov’ database). Bifidobacteria, a group of Gram-positive commensals account for 475 of these trials. Bifidobacteria colonise the gastrointestinal tract immediately after birth, affect maturation of the host’s immune system during the neonatal period and can locally promote maturation of dendritic cells (DCs) in the gut. Lower counts of bifidobacteria have been observed prior to NEC diagnosis, suggesting a protective effect of this human gut coloniser in the context of this devastating disease, which occurs in 1 in 1000 live births and leads to death in 15% of pre-term infant patients. Interestingly, a meta-analysis of 20 clinical trials involving 5,529 infants found that prophylactic use of probiotic preparations containing Lactobacillus or Bifidobacterium significantly reduced the incidence of severe NEC and mortality in pre-term infants demonstrating a protective effect of these bacteria. Additionally, in pre-clinical mouse models, certain bifidobacterial strains can protect against diet-induced colonic mucus deterioration, diet-induced colitis, and intestinal immunopathology in the context of immune checkpoint blockade therapy. Despite the impact of microbes on our health and the large number of ongoing clinical trials, our current knowledge on how the microbiota, including probiotics, affects human health is based almost exclusively on descriptive and correlative studies with a pressing need for mechanistic studies. The evidence for the efficacy of probiotics in treating disease is often conflicting and confusing. This disconnect demonstrates that a thorough investigation of the underlying mechanisms beneficial to the host are needed to better translate research findings to the clinic and develop novel immunomodulatory therapies for infectious and chronic inflammatory disease with a known mode-of-action. The goal of BIFPROTECTS is to identify the molecular mechanisms by which Bifidobacterium breve induces a host protective state in innate immune cells and to phenotype commensal microbes for a similar effect. This proposal will use B.breve UCC2003 as a model system to identify underlying mechanisms through which this strain induces immunomodulatory host protective effects.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Our bodies are home to a staggering collection of microbes with the human gut contains up to 2 kilograms of microbial mass. In healthy individuals the interplay between the immune system and the microbiota prevents tissue damaging inflammatory responses to commensal species of bacteria while permitting immune responses against infectious microbes. Changes in the gut microbiome have been linked to perturbation of immune function and several inflammatory gut disorders. Conversely, commensal microorganisms with purported health promoting effects (probiotics) have been implicated as potential therapeutics for several ailments with over 1,300 registered clinical trials using probiotics. Bifidobacteria, a Gram-positive commensal accounts for 475 of these trials. Bifidobacteria colonise the gastrointestinal tract immediately after birth and affect the maturation of the host’s immune system. Despite the impact of microbes on our health and the large number of clinical trials underway, our current knowledge of the impact of the microbiota, including probiotics, on health is based almost exclusively on descriptive and correlative studies with a need for studies focused on causality and mechanism. The central goal of this project is to understand the mechanisms by which Bifidobacterium breve induces an anti-inflammatory and anti-microbial state in host immune cells and to determine if this can be replicated using a synthetic biology approach. The ability of a range of commensals to elicit immune modulatory responses will also be studied to identify shared mechanisms of host-microbe dialogue across bacterial species. A thorough understanding of host-microbe interactions that lead to a tolerogenic, anti-inflammatory, and anti-microbial phenotype will aid in the development of novel microbiome-based treatments while the ability to replicate these effects using synthetic biology will establish a basis for novel immune based therapies.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSITY COLLEGE CORK - NATIONAL UNIVERSITY OF IRELAND, CORK · CorkКоординаторИрландия
Връзки
Данни: CORDIS, © Европейски съюз
