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The Microbiota-Gut-Immune-Glia (MGIG) Axis in Major Depression
Leszek Rudzki1,2, Michael Maes3,4,5
1The Charleston Centre, 49 Neilston Road, Paisley, PA2 6LY, UK. rudzki.l@gmail.com.
Abstract:
There is robust evidence that major depression (MDD) is accompanied by a low-grade activation of the immune-inflammatory response system, which is involved in the pathophysiology of this disorder. It is also becoming apparent that glia cells are in reciprocal communication with neurons, orchestrate various neuromodulatory, homeostatic, metabolic, and immune mechanisms, and have a crucial role in neuroinflammatory mechanisms in MDD. Those cells mediate the central nervous system (CNS) response to systemic inflammation and psychological stress, but at the same time, they may be an origin of the inflammatory response in the CNS. The sources of activation of the inflammatory response in MDD are immense; however, in recent years, it is becoming increasingly evident that the gastrointestinal tract with gut-associated lymphoid tissue (GALT) and increased intestinal permeability to bacterial LPS and food-derived antigens contribute to activation of low-grade inflammatory response with subsequent psychiatric manifestations. Furthermore, an excessive permeability to gut-derived antigenic material may lead to subsequent autoimmunities which are also known to be comorbid with MDD. In this review, we discuss fascinating interactions between the gastrointestinal tract, increased intestinal permeability, intestinal microbiota, and glia-neuron cross talk, and their roles in the pathogenesis of the inflammatory hypothesis of MDD. To emphasize those crucial intercommunications for the brain functions, we propose the term of microbiota-gut-immune-glia (MGIG) axis.
Insights
Major depression (MDD) involves immune system activation. The gut microbiome, gut barrier function, and gut-associated lymphoid tissue (GALT) influence brain inflammation and MDD pathogenesis via the microbiota-gut-immune-glia (MGIG) axis.
Area of Science:
- Neuroscience
- Immunology
- Gastroenterology
Background:
- Major depressive disorder (MDD) is linked to low-grade immune and inflammatory responses.
- Glia cells play a critical role in neuroinflammation and mediating the central nervous system's response to stress and inflammation.
- The gastrointestinal tract, including gut-associated lymphoid tissue (GALT), is increasingly recognized as a contributor to MDD pathophysiology.
Purpose of the Study:
- To review the interactions between the gut, intestinal permeability, microbiota, and glia-neuron communication in MDD.
- To propose the microbiota-gut-immune-glia (MGIG) axis to describe these intercommunications.
Main Methods:
- Literature review focusing on the inflammatory hypothesis of MDD.
- Analysis of the roles of glia cells, gut microbiota, and intestinal permeability.
- Synthesis of evidence linking gastrointestinal factors to neuroinflammation in MDD.
Main Results:
- Increased intestinal permeability allows bacterial products (LPS) and food antigens to enter circulation, activating inflammatory responses.
- Gut-derived antigens may trigger autoimmune responses comorbid with MDD.
- Reciprocal communication between glia and neurons is central to neuroinflammatory mechanisms in MDD.
Conclusions:
- The microbiota-gut-immune-glia (MGIG) axis provides a framework for understanding the gut's role in MDD.
- Targeting the MGIG axis may offer novel therapeutic strategies for MDD.
- Inflammation originating from the gut significantly contributes to the pathogenesis of major depression.
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