Fructus Aurantii Extracts Ameliorate Intestinal Inflammation and Regulate the Intestinal Barrier through Fc Epsilon RI Signaling Pathway

Author:

Liu Sicong1ORCID,Bao Yongrui123ORCID,Wang Shuai123ORCID,Li Tianjiao123ORCID,Leng Jiapeng1ORCID,Zheng Yi4ORCID,Meng Ying1ORCID,Zheng Ying1ORCID,Qi Bing1ORCID,Luo Xi1ORCID,Meng Xiansheng123ORCID

Affiliation:

1. College of Pharmacy, Liaoning University of Traditional Chinese Medicine, Dalian 116600, China

2. Liaoning Multi-Dimensional Analysis of Traditional Chinese Medicine Technical Innovation Center, Dalian 116600, China

3. Liaoning Province Modern Traditional Chinese Medicine Research and Engineering Laboratory, Dalian 116600, China

4. College of Integrated Chinese and Western Medicine, Liaoning University of Traditional Chinese Medicine, Shenyang 110847, China

Abstract

Fructus Aurantii (FA) is the dry and immature fruit of Citrus aurantium L. and its rutaceous cultivars. FA has been widely used to treat digestive system diseases since ancient China, and it promotes gastrointestinal (GI) motility in functional dyspepsia (FD), but its potential therapeutic mechanisms remain unclear. We examined the effects of FA ethanol extracts in an iodoacetamide (IA)-induced FD rat model. Firstly, key FA therapy targets for FD were gathered using systematic pharmacology. Combined with systemic pharmacological analyses, plasma metabolomics based on UPLC-QTOF-MS were conducted. Then, MetaboAnalyst was used to jointly analyze systemic pharmacology targets and metabolomic metabolites to select key metabolic pathways. Finally, the key path is verified by experiments. FA exerted distinct therapeutic effects in anti-inflammation and promoting gastrointestinal motility in our IA-induced FD rat model. When compared with the model group, FA down-regulated the inflammatory factors interleukin 1β and tumor necrosis factor-α. At the same time, FA up-regulated tight junction proteins in the intestinal epithelial barrier. Through the integrated analysis of metabolomics and systemic pharmacology, we conducted experimental verification on Fc epsilon RI signaling pathway. When compared with the model group, FA down-regulatedphospho-mitogen activated protein kinase, phospho-extracellular signal regulated kinase1/2, myosin light chain kinase, and phospho-myosin regulatory light chain protein levels. Thus, FA ameliorated FD by regulating the Fc epsilon RI signaling pathway. Our integrated strategy identified underlying FA mechanisms toward FD treatment and provided a foundation for FA development as a clinical agent for FD.

Funder

Key Research and Development Program of Liaoning Province

Publisher

Hindawi Limited

Subject

Cell Biology,Pharmacology,Food Science,Biophysics

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