评估肠道运动障碍背后的分子和遗传机制
Atchariya Chanpong1,2, Maria M Alves3, Elena Bonora4,5
1Division of Gastroenterology and Hepatology, Department of Pediatrics, Faculty of Medicine, Prince of Songkla University, Songkhla, Thailand.
Expert review of gastroenterology & hepatology
|December 20, 2023
概括
胃肠道 (GI) 运动障碍会影响肠道功能. 最近分子和遗传研究的进展为这些复杂的疾病提供了对病变发生和潜在治疗方法的新见解.
科学领域:
- 胃肠病学和神经胃肠病学
- 分子和遗传医学 分子和遗传医学
- 消化系统疾病 消化系统疾病
背景情况:
- 胃肠道 (GI) 运动障碍包括各种影响胃肠道神经肌肉结构和功能完整性的疾病.
- 临床表现和疾病负担因受影响的肠道区域,参与程度和特定的神经肌肉组成部分而异.
研究的目的:
- 审查当前关于肠道不运动的分子和遗传机制的知识,包括肠-大脑相互作用的障碍.
- 突出最近在了解肠道运动障碍的病变发生方面的进展.
主要方法:
- 使用PubMed和Medline数据库进行了全面的文献审查.
- 确定了2016年至2023年期间发表的文章,重点关注肠道动力和功能障碍.
主要成果:
- 该综述综合了有关肠胃不运动的分子和遗传基础的信息.
- 它涵盖肠-大脑相互作用的障碍,包括运动和感觉障碍.
结论:
- 尽管病理生理学尚不清楚,但肠道组织评估,奥米克技术和动物模型的进步正在改善洞察力.
- 这些进展有助于更好地了解疾病的发病因子,并开发改善的治疗策略,以治疗胃肠道运动障碍.
相关概念视频
Gastrointestinal Motility Disorders
381
Gastrointestinal or GI motility disorders are characterized by irregular gastrointestinal tract movements, disrupting food transit from the mouth to the anus. They are caused by damage or dysfunction in gut muscles or nerves. These disorders can cause symptoms such as severe constipation, diarrhea, abdominal pain, and swallowing difficulties. Disorders can affect any segment of the GI tract and range widely in severity, from common conditions like GERD to life-threatening conditions like...
381
Gastric Motility
750
Gastric motility is the coordinated contraction and relaxation of stomach muscles that convert ingested food into chyme, a semi-liquid substance ready for further digestion in the intestines. The process begins with the vagus nerve inducing the relaxation of the smooth muscles in the fundus and body of the stomach, allowing these regions to expand and accommodate up to approximately 1.5 liters of food and liquid.
Peristaltic Waves and Chyme Formation
Upon food entry, the stomach initiates...
Peristaltic Waves and Chyme Formation
Upon food entry, the stomach initiates...
750
Drugs Affecting GI Tract Motility: Serotonin Receptor Agonists
264
Serotonin, a crucial neurotransmitter synthesized by enterochromaffin cells, plays a cardinal role in regulating gastrointestinal (GI) motility. With over 90% of the body's total serotonin in the GI tract, its influence on digestive processes is profound. Serotonin is swiftly released upon various stimuli, such as food boluses or certain drugs, triggering intrinsic sensory neurons in the myenteric plexus and extrinsic vagal and spinal sensory neurons. This leads to the activation of the...
264
Irritable Bowel Syndrome I: Introduction
277
Irritable Bowel Syndrome (IBS) is characterized by functional disturbances in the gastrointestinal system, presenting a cluster of symptoms without evident structural or biochemical abnormalities. It primarily affects the large intestine and may cause abdominal pain, bloating, excessive gas, diarrhea, constipation, or both.
IBS is a chronic condition that can persist over a long period or recur frequently.
The pathogenesis of IBS involves a complex interplay of the following factors:
Altered...
IBS is a chronic condition that can persist over a long period or recur frequently.
The pathogenesis of IBS involves a complex interplay of the following factors:
Altered...
277
Drugs Affecting GI Tract Motility: Dopamine Receptor Antagonists
332
Prokinetic agents are specialized medications that stimulate gastrointestinal (GI) motility, promoting food movement through the GI tract. Dopamine, an inhibitory neurotransmitter, plays a significant role in this process, reducing GI motility and indirectly controlling the speed of digestion. Dopamine receptor antagonists, such as metoclopramide and domperidone, offer a unique advantage as prokinetic agents. By blocking the dopamine receptors, these drugs increase GI motility, improving food...
332
Enteric Nervous System: Regulation of GI Motor Activity
399
The Enteric Nervous System (ENS) plays a pivotal role in regulating gastrointestinal or GI motor activity. This complex network of nerves, deeply embedded within the gut wall, responds to changes in the gut environment and receives input from both the autonomic nervous system and the central nervous system. By doing so, the ENS operates various programs tailored to the body's nutritional status and needs.
During periods of fasting, the ENS initiates the migrating myoelectric complex, a...
During periods of fasting, the ENS initiates the migrating myoelectric complex, a...
399


