首页|加减异功散体外改善脾虚犬肠道菌群结构及修复Caco-2细胞黏膜屏障的分子机制

加减异功散体外改善脾虚犬肠道菌群结构及修复Caco-2细胞黏膜屏障的分子机制

扫码查看
旨在基于网络药理学研究加减异功散(modified Yigong powder,MYG)治疗脾虚证的分子机制,并分析MYG对模拟胃肠脾虚犬肠道菌群及Caco-2细胞黏膜屏障的影响,以及肠道菌群与黏膜屏障间的互作效应.利用网络药理学方法预测MYG治疗脾虚证的分子机制.试验采集3只(12±1)岁脾虚柯基犬粪样后,建立体外胃肠模拟体系,分为原始粪样组、胃肠模拟组和胃肠模拟加异功散组,并利用16S rDNA法检测各组菌群结构变化.再从胃肠模拟加异功散组中提取代谢产物,研究其对LPS诱导的Caco-2细胞黏膜屏障损伤模型的影响,细胞试验分为空白对照组、模型组、异功散代谢产物组,进行荧光素钠通透性测定,并利用qPCR检测Claudin-1、Occludin与ZO-1 mRNA表达量.进一步对MYG干预后的肠道菌群与Caco-2细胞黏膜屏障指标进行相关性分析.结果显示,MYG有76个活性成分和45个治疗脾虚证的潜在靶点,蛋白互作分析得40个关键靶点,GO富集得34个条目,KEGG富集得16条通路;在胃肠模拟体系中,与胃肠模拟组相比,胃肠模拟异功散组在门水平上,厚壁菌门(Firmicutes)、拟杆菌门(Bac-teroides)和放线菌门(Actinobacteriota)丰度显著增加(P<0.05),变形菌门(Proteobacteria)丰度显著降低(P<0.05),在属水平上,梭杆菌属(Fusobacterium)、瘤胃球菌属([Ruminococcus]gnavus group)和布劳特菌属(Blautia)丰度显著增加(P<0.05),大肠杆菌-志贺菌属(Escherichia-Shigella)和柠檬酸杆菌属(Citrobacter)丰度显著降低(P<0.05),菌群的多样性指数也显著升高(P<0.05);在细胞试验中,与模型组相比,异功散代谢产物组Caco-2细胞黏膜通透性极显著降低(P<0.001),Claudin-1、Occludin与ZO-1 mRNA表达量极显著增加(P<0.001);通过相关性分析,发现菌群结构与黏膜屏障指标有一定相关性.综上,MYG可能通过槲皮素、花生四烯酸、柚皮素等76个活性成分,作用于TNF、IL6、IL18、CXCL8、AKT1等40个关键靶点,通过AGE-RAGE、FoxO、HIF-1等16条信号通路治疗犬脾虚证.此外,MYG的胃肠代谢产物能够上调紧密连接蛋白mRNA的表达量,降低黏膜通透性,修复黏膜屏障,这可能与MYG调节菌群结构有关.
Molecular mechanism underlying in vitro improvement of structure of intestinal flora of gastrointestinal simulation of spleen deficiency canines and repairing ad-hesion barrier of Caco-2 cells by modified Yigong powder
To investigate the molecular mechanism of modified Yigong powder(MYG)in the treat-ment of spleen deficiency syndrome based on network pharmacology and analyzed the effect of MYG on gastrointestinal simulated intestinal flora of spleen deficiency dogs and mucosal barrier of Caco-2 cells,as well as the interaction between intestinal flora and mucosal barrier.The molecular mechanism of MYG in the treatment of spleen deficiency syndrome was predicted by network pharmacology.The fecal samples of three canines(12±1)years old with spleen deficiency were collected to establish an in vitro gastrointestinal simulation system,which was divided into the o-riginal fecal sample group,the gastrointestinal simulation group and the gastrointestinal simulation treated by MYG group.The structural changes of the flora in each group were detected by 16S rD-NA sequencing.The metabolites were extracted from the gastrointestinal simulation system trea-ted by MYG group to study its effect on LPS-induced Caco-2 cell mucosal barrier injury model.The cell experiments included the blank control group,LPS model group,modified Yigong metabolite group.The permeability of mucosal was determined by fluorescein sodium,and then relative ex-pression levels of Claudin-1,Occludin and ZO-1 mRNA were determined by qPCR.The correlation between intestinal flora and Caco-2 cell mucosal barrier index after MYG intervention was further analyzed.The results showed that MYG had 76 active ingredients and 45 potential targets for the treatment of spleen deficiency syndrome.Forty key targets were obtained through protein interac-tion analysis,34 items were obtained by GO enrichment analysis,and 16 pathways were obtained by KEGG enrichment analysis.In the gastrointestinal simulation system,compared with the gas-trointestinal simulation group,at the phylum level,the abundance of Firmicutes,Bacteroides and Actinobacteriota increased significantly(P<0.05),and the abundance of Proteobacteria decreased significantly(P<0.05).At the genus level,the abundance of Fusobacterium,[Ruminococcus]gna-vus group and Blautia increased significantly(P<0.05),while the abundance of Escherichia-Shi-gella and Citrobacter decreased significantly(P<0.05).The diversity index of intestinal flora in the gastrointestinal simulation treated by MYG group was significantly increased(P<0.05).In cell experiments,compared with the LPS model group,the mucosal permeability of Caco-2 cells in the modified Yigong metabolite group was significantly reduced(P<0.01),and the expression levels of Claudin-1,Occludin and ZO-1 mRNA were significantly increased(P<0.01).Correlation analysis showed that there was a certain correlation between bacterial community structure and mucosal barrier indexes.In summary,MYG may act on 40 key targets such as TNF,IL6,IL18,CX-CL8 and AKT1 through 76 active ingredients such as quercetin,arachidonic acid and naringin,and treat spleen deficiency syndrome in dogs through 16 signaling pathways such as AGE-RAGE,FoxO and HIF-l.In addition,the gastrointestinal metabolites of MYG up-regulate tight junction protein mRNA expression,reduce mucosal permeability,and repair mucosal barrier,which may be related to MYG's regulation of flora structure.

modified Yigong powdernetwork pharmacologygastrointestinal simulationintestinal floramucosal barrierspleen deficiency canines

张进、张敏爱、王海丽、许铠杰、郭寿鹏、张希春、陈书明

展开 >

山西农业大学 动物医学学院,山西太谷 030801

太原海关技术中心,山西太原 030000

山西中医药大学中药与食品工程学院,山西晋中 030619

加减异功散 网络药理学 胃肠模拟 肠道菌群 黏膜屏障 脾虚犬

山西省重点研发计划吕梁市重点研发项目

201903D2210132020NYGG4

2024

中国兽医学报
吉林大学

中国兽医学报

CSTPCD北大核心
影响因子:0.702
ISSN:1005-4545
年,卷(期):2024.44(6)
  • 8