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Published on: August 23, 2019
Microbiota-Immune Interaction in the Pathogenesis of Gut-Derived Infection
Chenyang Wang1, Qiurong Li1, Jianan Ren1
1Research Institute of General Surgery, Jinling Hospital, Medical School, Nanjing University, Nanjing, China.
Abstract:
Gut-derived infection is among the most common complications in patients who underwent severe trauma, serious burn, major surgery, hemorrhagic shock or severe acute pancreatitis (SAP). It could cause sepsis and multiple organ dysfunction syndrome (MODS), which are regarded as a leading cause of mortality in these cases. Gut-derived infection is commonly caused by pathological translocation of intestinal bacteria or endotoxins, resulting from the dysfunction of the gut barrier. In the last decades, the studies regarding to the pathogenesis of gut-derived infection mainly focused on the breakdown of intestinal epithelial tight junction and increased permeability. Limited information is available on the roles of intestinal microbial barrier in the development of gut-derived infection. Recently, advances of next-generation DNA sequencing techniques and its utilization has revolutionized the gut microecology, leading to novel views into the composition of the intestinal microbiota and its connections with multiple diseases. Here, we reviewed the recent progress in the research field of intestinal barrier disruption and gut-derived infection, mainly through the perspectives of the dysbiosis of intestinal microbiota and its interaction with intestinal mucosal immune cells. This review presents novel insights into how the gut microbiota collaborates with mucosal immune cells to involve the development of pathological bacterial translocation. The data might have important implication to better understand the mechanism underlying pathological bacterial translocation, contributing us to develop new strategies for prevention and treatment of gut-derived sepsis.
Insights
Gut-derived infections, a major cause of sepsis and mortality after critical illness, stem from intestinal barrier dysfunction. This review highlights how gut microbiota dysbiosis and its interaction with immune cells drive bacterial translocation, offering new therapeutic targets.
Area of Science:
- Gastroenterology
- Microbiology
- Immunology
Background:
- Gut-derived infections are common complications in critically ill patients, leading to sepsis and mortality.
- Pathological translocation of intestinal bacteria causes these infections, often due to gut barrier dysfunction.
- Previous research focused on epithelial tight junctions, with limited understanding of the microbial barrier's role.
Purpose of the Study:
- To review recent advances in understanding gut-derived infection pathogenesis.
- To explore the roles of intestinal microbiota dysbiosis and immune cell interactions.
- To provide insights into bacterial translocation mechanisms and potential therapeutic strategies.
Main Methods:
- Literature review of recent research on intestinal barrier disruption and gut-derived infection.
- Focus on next-generation DNA sequencing in gut microecology studies.
- Analysis of microbiota-immune cell interactions in bacterial translocation.
Main Results:
- Intestinal microbiota dysbiosis plays a crucial role in gut-derived infection development.
- Interactions between gut microbiota and mucosal immune cells are key to pathological bacterial translocation.
- Advances in sequencing reveal complex gut microecology and disease connections.
Conclusions:
- Gut microbiota dysbiosis and its interplay with mucosal immunity are critical in pathological bacterial translocation.
- Understanding these mechanisms can lead to novel strategies for preventing and treating gut-derived sepsis.
- This review offers new perspectives on the gut microbial barrier's contribution to infection.
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