Institute of Biomedical Sciences, Shanxi University, Taiyuan 030006, China.
Shanxi Provincial Key Laboratory of Medical Molecular Cell Biology, Shanxi University, Taiyuan 030006, China.
Nutrients. 2024 Jul 5;16(13):2148. doi: 10.3390/nu16132148.
Excessive alcohol consumption has led to the prevalence of gastrointestinal ailments. Alleviating gastric disorders attributed to alcohol-induced thinning of the mucus layer has centered on enhancing mucin secretion as a pivotal approach. In this study, foxtail millet bran polyphenol BPIS was divided into two components with MW < 200 D and MW > 200 D by molecular interception technology. Combined with MTT, cell morphology observation, and trypan blue staining, isoferulic acid (IFA) within the MW < 200 D fraction was determined as the effective constituent to mitigate ethanol-induced damage of gastric epithelial cells. Furthermore, a Wistar rat model with similar clinical features to alcohol-induced gastric mucosal injury was established. Then, gastric morphological observation, H&E staining, and assessments of changes in gastric hexosamine content and gastric wall binding mucus levels were carried out, and the results revealed that IFA (10 mg/Kg) significantly ameliorated alcohol-induced gastric mucosal damage. Finally, we applied techniques including Co-IP, molecular docking, and fluorescence spectroscopy and found that IFA inhibited the alcohol-induced downregulation of N-acetylgalactosamintransferase 2 (GALNT2) activity related to mucus synthesis through direct interaction with GALNT2 in gastric epithelial cells, thus promoting mucin synthesis. Our study lays a foundation for whole grain dietary intervention tailored to individuals suffering from alcoholic gastric mucosal injury.
过量饮酒导致胃肠道疾病流行。缓解因酒精引起的黏液层变薄而导致的胃部疾病,主要集中在增强黏蛋白分泌上。在这项研究中,采用分子截留技术,将小米糠多酚 BPIS 分为 MW<200D 和 MW>200D 两部分。通过 MTT、细胞形态观察和台盼蓝染色,确定 MW<200D 部分中的阿魏酸(IFA)是减轻乙醇诱导的胃上皮细胞损伤的有效成分。此外,建立了一种具有类似临床特征的酒精诱导胃黏膜损伤的 Wistar 大鼠模型。然后进行胃形态观察、H&E 染色以及胃己糖胺含量和胃壁结合黏液水平变化的评估,结果表明 IFA(10mg/kg)显著改善了酒精引起的胃黏膜损伤。最后,我们应用包括 Co-IP、分子对接和荧光光谱在内的技术,发现 IFA 通过与胃上皮细胞中的 GALNT2 直接相互作用,抑制了酒精诱导的与黏液合成相关的 N-乙酰半乳糖胺转移酶 2(GALNT2)活性的下调,从而促进黏蛋白的合成。我们的研究为针对酒精性胃黏膜损伤患者的全谷物饮食干预奠定了基础。