Exploring the Mechanisms of Gastroesophageal Reflux Disease Based on the Brain-Gut Axis Theory
作者:Siqi Du, L Zhang, Yun Chen, Qingyu Zhang, Biwei Chen, Shaozong Chen · 发表于:International Journal of General Medicine · 年份:2025 · DOI:10.2147/ijgm.s558504 · 被引用次数:2 · 研究领域:Gastroesophageal reflux and treatments、Gastrointestinal motility and disorders、Gut microbiota and health
Gastroesophageal reflux disease (GERD) is a common clinical digestive disorder with a complex pathological mechanism. Traditional understanding of its mechanisms primarily focuses on factors such as lower esophageal sphincter dysfunction, impaired esophageal clearance, delayed gastric emptying, and abnormal gastric acid secretion. In recent years, the introduction of the brain-gut axis (BGA) theory has provided a new perspective for the systematic understanding of GERD's pathogenesis. However, there remains a significant lack of understanding regarding the specific mechanisms of BGA in GERD, particularly in terms of the interactions between the nervous, endocrine, and immune systems, and how they influence the symptoms and progression of gastroesophageal reflux. This paper aims to review the abnormal mechanisms of the nervous, endocrine, and immune systems in GERD based on the BGA theory, clarify the relationships between these systems in the development of GERD, and explore the current gaps in knowledge and future research directions. Studies have shown that GERD patients often present with neurological abnormalities such as central nervous system hypersensitivity, autonomic nervous imbalance, and enteric nervous system remodeling. Additionally, activation of the HPA axis and prolonged elevation of cortisol exacerbate esophageal injury, while local and systemic immune inflammation further induces visceral hypersensitivity, creating a stress-induced "neuroimmune loop". Based ...