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The phenomenon of the gut–memory connection is based on and part of the idea of the gut-brain axis, a complex communication network, linking the central nervous system to the gut. The gut-brain axis first gained significant momentum in research and formal recognition in the 20th century with advancements in neuroscience and gastroenterology ...
The gut–brain axis is the two-way biochemical signaling that takes place between the gastrointestinal tract (GI tract) and the central nervous system (CNS). [2] The term "microbiota–gut–brain axis" highlights the role of gut microbiota in these biochemical signaling.
The brain-gut axis influences the entire body through a variety of pathways; it regulates sensory, motor, endocrine, autonomic, immune, and inflammatory reactions. Within the physical and psychological interactions of FGIDs specifically, psychiatric disorders such as anxiety, depression, and even autism are well-linked to GI dysfunction.
Each macronutrient can impact cognition through multiple mechanisms, including glucose and insulin metabolism, neurotransmitter actions, oxidative stress and inflammation, and the gut-brain axis. [4] [5] [6] Inadequate macronutrient consumption or proportion could impair optimal cognitive functioning and have long-term health implications.
The mechanisms of autism are divided into two main areas: pathophysiology of brain structures and processes, and neuropsychological linkages between brain structures and behaviors, with multiple pathophysiologies linked to various autism behaviors. [10] Evidence suggests gut–brain axis abnormalities may contribute to autism.
Aging, a major risk factor of PD, results in alterations to the gut microbiota's biodiversity, which it increases from infancy to adult and begins to decline with age. [3] There are many factors that contribute to this decline, such as the immune system, changes in lifestyle, the environment, medications, other diseases, and organ dysfunction.
The gut microbiota contributes to digestion and immune modulation, as it plays a role in the gut-brain axis, where microbial metabolites such as short-chain fatty acids and neurotransmitters influence brain function and behavior. The gut–brain axis is the biochemical signaling that takes place between the gastrointestinal tract and the ...
The intestine is also called the bowel or the gut. The lower GI starts at the pyloric sphincter of the stomach and finishes at the anus. The small intestine is subdivided into the duodenum, the jejunum and the ileum. The cecum marks the division between the small and large intestine. The large intestine includes the rectum and anal canal. [2]