石康宁通过调节肠上皮细胞中的GPX4表达来改善肠道屏障功能
Fuheng Yang1, Peihua Liang1, Hengli Guo2
1Department of Pharmacy, Zhuhai Women and Children's Hospital, Zhuhai, China.
International journal of immunopathology and pharmacology
|February 26, 2026
概括
石康宁通过增加GPX4,增强CDX2表达和屏障功能来降低肠道细胞中的铁亡. 这种涉及PKA/CREB信号传递的机制,暗示了什基诺宁.
科学领域:
- 胃肠道学和细胞生物学
- 疾病的分子机制.
- 药物发现和开发 药物发现和开发
背景情况:
- 希科宁通过CDX2.2影响肠上皮细胞 (IEC) 的分化.
- 铁酶与IEC分化有关,但其在什科宁效应中的作用尚不清楚.
研究的目的:
- 为了研究铁死在希可宁诱导的CDX2-介导的IEC分化中的作用.
主要方法:
- 实时PCR,西式斑点, luciferase测定,免疫沉和染色体免疫沉被使用.
- 在HT-29和Caco-2细胞系上进行了实验.
主要成果:
- 石康宁治疗通过上调谷氨过氧化酶4 (GPX4) 和溶解物载体家族7 (氨基酸载体) 成员11来降低铁.
- 这导致了CDX2表达的增强和IEC屏障功能的改善.
- 什科宁激活了PKA/CREB通路,促进了CREB与GPX4促进剂结合和GPX4的交换激活.
结论:
- 希科宁通过GPX4上调抑制铁,从而促进CDX2表达并改善IEC屏障功能.
- 这种PKA/CREB信号通路对于什科宁的作用至关重要.
- 石康宁显示出作为治疗肠粘膜损伤的治疗剂的潜力.
相关概念视频
Renewal of Intestinal Stem Cells
3.4K
The intestinal epithelial lining rapidly renews every 4 to 5 days. The renewal is facilitated by intestinal stem cells (ISCs) located at the base of the crypt– a gland located at the bottom of each villus. ISCs divide asymmetrically to form new stem cells and progenitor daughter cells. The daughter cells are called transit-amplifying (TA) cells which move upwards along the crypt and either differentiate into absorptive cells– the enterocytes or secretory cells– including the...
3.4K
Role Of Notch Signalling In Intestinal Stem Cell Renewal
2.5K
Notch signaling was first discovered in Drosophila melanogaster, where it is involved in cell lineage differentiation. Notch signaling regulates the maintenance and differentiation of intestinal stem cells or ISCs by controlling the expression of atonal homolog 1 or Atoh1. Atoh1 directs cells to differentiate into secretory cells.
Direct cell-to-cell contact is needed for the activation of Notch signaling. The signal is initiated when a notch ligand binds to a receptor on an adjacent cell, also...
Direct cell-to-cell contact is needed for the activation of Notch signaling. The signal is initiated when a notch ligand binds to a receptor on an adjacent cell, also...
2.5K
Physiology of Enteric Nervous System and Gut Health
1.1K
The gastrointestinal tract, responsible for the digestion and absorption of nutrients, is safeguarded by the intestinal barrier, which consists of secretory, physical, and immune components. At the forefront is the secretory barrier, composed of essential elements such as mucus, gut microbiota, and defense proteins. They collaborate to break down food particles, facilitate nutrient absorption, and maintain optimal gut health. These secretory components ensure the smooth functioning of the...
1.1K
Mucosal Barrier of the Stomach
2.6K
The gastric glands contain parietal cells that secrete hydrochloric acid (HCl) for digestion. The cells secrete HCl because it is highly corrosive and essential for breaking down food. To achieve this, they secrete hydrogen and chloride ions into the lumen of the gastric glands, which combine to form HCl.
Within parietal cells, carbonic acid is first formed through the reaction of water and carbon dioxide. The dissociation of carbonic acid releases bicarbonate and hydrogen ions. The bicarbonate...
Within parietal cells, carbonic acid is first formed through the reaction of water and carbon dioxide. The dissociation of carbonic acid releases bicarbonate and hydrogen ions. The bicarbonate...
2.6K
Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal
2.7K
Erythropoietin-producing hepatocellular carcinoma receptor (Eph) and its ligand, Eph receptor-interacting protein (Ephrin) were first discovered in the human carcinoma cell line, hence the name. Ephrin-Eph interaction guides cells to reach their appropriate location in adult tissues. They also play an essential role in the immune system by helping in immune cell migration, adhesion, and activation. Based on their structure and function, Eph is divided into two classes — EphA and EphB.
2.7K


