BETA-BACT · Beta-cell inflammation and dysfunction induced by bacterial translocation
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2016-06-01 → 2018-12-01
- Финансиране от ЕС
- 167 611 €
- Участници
- 3
- Схема
- MSCA-IF-GF
Линиите свързват координатора с партньорите.
Накратко на български
Бактерии и техните токсини от червата могат да предизвикат възпаление в бета-клетките на панкреаса. Разбирането на този процес помага за стабилизиране на функцията на тези клетки при диабет тип 2.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Beta-cell inflammation and dysfunction induced by bacterial translocation
An obesity-driven type 2 diabetes (T2D) epidemic is ongoing with an estimated 600 million patients affected by 2035. T2D induces significant morbidity and mortality through the development of micro- and macrovascular complications and is projected to be one of the leading causes of death in 2030, making the need for better treatment essential. Failure of pancreatic beta cells is the cause for development and progression of the disease. Thus, therapeutic aims to reverse or stabilize beta-cell function in T2D are critical to slow the course of this devastating disease. The cause for beta-cell loss is unknown but seems related to a chronic inflammatory process driven by cytokines, macrophages and the innate immune system. The triggers involved in this process, however, are incompletely understood. However, in order to specifically target beta-cell inflammation, the processes that initiate and drive the influx of these immune cells into pancreatic beta cells need to be unraveled. Recent research indicates that intestinal microbiota composition is associated with development of T2D in large epidemiological studies. Notably, bacterial-derived endotoxins, in particular lipopolysaccharides (LPS) derived from intestinal Gram-negative bacteria, show a transient rise following a meal that is limited in lean control subjects but pronounced in metabolically impaired individuals. The prevailing hypothesis is that high energy/fat intake leads to gut microbiota dysbiosis and alterations in circulating bacteria and endotoxins through leakage. Thus, direct exposure of beta cells to Gram-negative bacteria as well as their toxins might trigger beta-cell inflammation in T2D. A critical receptor in this respect may be the Toll-like receptor (TLR), predominantly subtype 4 (TLR4). As such, LPS binds to TLR-4, which is expressed on many tissues including the beta cell. Many studies have linked exposure to LPS to impaired glucose and lipid metabolism through TLR4-related mechanisms. Specifically, for beta cells, infusion of LPS in mice was recently shown to impair glucose-stimulated insulin secretion (GSIS) and insulin production through TLR-4 related pathways. In addition, in TLR4-/- mice, both LPS and a high-fat diet were unable to elicit an inflammatory response in pancreatic islets. In particular, macrophage infiltration was absent as well as production of IL-1β. Moreover, the detrimental effects of inflammation on insulin production and secretion were also mitigated. Taken together, these data suggest that altered intestinal microbiota, likely secondary to the consumption of a high-fat diet, and enhanced translocation of bacteria and their toxins could serve as an important trigger of TLR-4 mediated low-grade inflammation in the pancreas resulting in beta-cell dysfunction. Thus modulation of microbiota composition/translocation could potentially halt the decline in beta-cell function characterized of type 2 diabetes mellitus. Overview of the action: 1. To determine whether increased translocation of (Gram-negative) bacteria and concomitant TLR4 upregulation occurs in the pancreas of humans with T2D patients, and to identify the specific microorganisms involved. 2a. To determine the effect of the identified, most abundant pathogenic bacteria (from Objective 1) on glucose metabolism, beta-cell function and inflammation, by introducing the cultured microorganisms to mice. 2b. To determine the role of TLR4 in glucose dysregulation, beta-cell dysfunction and inflammation, induced by the most abundant pathogenic bacteria (from Objective 1) in mice.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Type 2 diabetes (T2D) has risen to epidemic proportions resulting in major morbidity and mortality. In addition to insulinresistance (i.e. impaired insulin action), impaired function and destruction of the insulin-producing beta cells form the directcause for hyperglycemia and T2D, and causes the progressive course of disease. As such, due to continuous beta-celldestruction, many patients require treatment with exogenous insulin therapy. Clearly, therapies that may halt or reverse thisdetrimental process are warranted.An inflammatory process in islets of Langerhans, with infiltration of immune cells and a central role for toll-like receptors(TLR), is present in T2D, however, the primary trigger for this inflammatory response remains unknown. Recently, (diet-induced)alterations in intestinal microbiota composition were shown to associate with T2D. In addition, T2D patients haveincreased translocation of detrimental bacteria (‘leaky gut’), previously shown to induce adipose tissue inflammation anddysfunction.Recently, I hypothesized that increased bacterial translocation to the pancreas induces inflammation and beta-celldysfunction in T2D through TLR related mechanisms. I addressed this hypothesis first by identifying translocated microorganismDNA in pancreatic tissue harvested during pancreatectomy in patients with and without T2D. In pilot data, I havedemonstrated increased bacterial load in patients with T2D as compared to control patients. The involved micro organismswith highest pathogenicity will be (an)aerobically cultured and subsequently used in gavage studies in a obese mouse model with or without a knockout for TRL4 to study their effects effects on beta-cell function, glucose metabolism and pancreas inflammation.
Оригинален текст от CORDIS (на английски).
Участници
- STICHTING AMSTERDAM UMC · AmsterdamКоординаторНидерландия
- STICHTING VU · AmsterdamНидерландия
- UNIVERSITY OF BRITISH COLUMBIA · VANCOUVERКанада
Връзки
- Виж в CORDIS
- DOI: 10.3030/708193
- http://ec.europa.eu/research/mariecurieactions/about/individual-fellowships_en
Данни: CORDIS, © Европейски съюз
