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microbiota/inflammation

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Inflammatory bowel disease (IBD) is a complex set of diseases that lead to chronic inflammation in the gastrointestinal tract. Although the etiology of IBD is not fully understood, it is well-known that the intestinal microbiota is associated with the development and maintenance of IBD. Manipulation
The intestinal microbiota plays an important role in inflammatory bowel disease (IBD). The pathogenesis of IBD involves inappropriate ongoing activation of the mucosal immune system driven by abnormal intestinal microbiota in genetically predisposed individuals. However, there are still no

Microbiota, inflammation and obesity.

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Interactions between metabolism and immunity play a pivotal role in the development of obesity-associated chronic co-morbidities. Obesity involves impairment of immune function affecting both the innate and adaptive immune system. This leads to increased risk of infections as well as chronic

[Microbiota and inflammatory rheumatisms].

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The microbiota and dysbiosis are involved in various diseases. Many studies in mice and humans demonstrate its influence on inflammatory rheumatisms. In rheumatoid arthritis (RA), Prevotella copri, a Gram-negative bacteria of the intestinal flora, is found to be more prevalent in the early stages of

Gut microbiota and inflammation.

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Systemic and local inflammation in relation to the resident microbiota of the human gastro-intestinal (GI) tract and administration of probiotics are the main themes of the present review. The dominating taxa of the human GI tract and their potential for aggravating or suppressing inflammation are

[Intestinal microbiota].

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The human body normally lives in symbiosis with a considerable microscopic environment present on all interfaces with the external environment; it hosts ten times more microbes (microbiota) that it has somatic or germ cells, representing a gene diversity (microbiome) 100-150 times higher than the

[Intestinal microbiota].

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There is accumulative evidence on the multiple functions of the intestinal microflora in relation to the homeostasis of the host. At first considered as a simple mutualism, today this relationship proves to be essential to the health and to pathologic processes, particularly metabolic (eg, obesity)
Rapid environmental transition and modern lifestyles are likely driving changes in the biodiversity of the human gut microbiota. With clear effects on physiologic, immunologic, and metabolic processes in human health, aberrations in the gut microbiome and intestinal homeostasis have the capacity for
Growing evidence supports the potential role of intestinal microbiota in the pathophysiology of inflammatory bowel diseases (IBD) even if the literature does not reveal uniform alterations. The aim of the study was to evaluate the mucosal (MM) and faecal microbiota (FM) composition in

Microbiota, Inflammation and Colorectal Cancer.

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Colorectal cancer, the fourth leading cause of cancer-related death worldwide, is a multifactorial disease involving genetic, environmental and lifestyle risk factors. In addition, increased evidence has established a role for the intestinal microbiota in the development of colorectal cancer.

Microbiota and pelvic inflammatory disease.

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Female genital tract microbiota play a crucial role in maintaining health. Disequilibrium of the microbiota has been associated with increased risk of pelvic infections. In recent years, culture-independent molecular techniques have expanded understanding of the composition of genital microbiota and

Microbiota-mitochondria inter-talk: consequence for microbiota-host interaction.

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New discoveries in metagenomics and clinical research have highlighted the importance of the gut microbiota for human health through the regulation of the host immune response and energetic metabolism. The microbiota interacts with host cells in particular by intermingling with the mitochondrial

Inflammation, Microbiota, and Prostate Cancer.

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BACKGROUND Chronic inflammation of the prostate has been associated with preneoplastic lesions and cancer development. Multiple causes have been considered for chronic inflammation of the prostate. Inflammatory cytokines such as interleukins are implicated in prostate carcinogenesis and

Microbiota in chronic mucosal inflammation.

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