Dissecting the effect of ileal faecal diversion on the intestine using single‐cell sequencing

杯状细胞 回肠 大肠 小肠 肠上皮 生物 免疫系统 刺激 上皮 医学 病理 内科学 免疫学
作者
Haitao Ma,Xiaolong Li,Yi-Yang Pan,Liucan Wang,Ben Han,Huichao Xie,Hong Zheng,Enlai Jiang,Jianghong Chen,Yunbo Li,Guangyan Ji,Yuan Qiu,Weidong Xiao
出处
期刊:Clinical and translational medicine [Springer Science+Business Media]
卷期号:13 (7) 被引量:4
标识
DOI:10.1002/ctm2.1321
摘要

Abstract Background Although ileal faecal diversion is commonly used in clinical settings, complications accompany it. Elucidating the intestinal changes caused by ileal faecal diversion will help resolve postoperative complications and elucidate the pathogenic mechanisms of associated intestinal disorders, such as Crohn's disease (CD). Therefore, our study aimed to provide new insights into the effects of ileal faecal diversion on the intestine and the potential mechanisms. Methods Single‐cell RNA sequencing was performed on proximal functional and paired distal defunctioned intestinal mucosae from three patients with ileal faecal diversion. We also performed in vitro cellular and animal experiments, tissue staining and analysed public datasets to validate our findings. Results We found that the epithelium in the defunctioned intestine tended to be immature, with defective mechanical and mucous barriers. However, the innate immune barrier in the defunctioned intestine was enhanced. Focusing on the changes in goblet cells, we demonstrated that mechanical stimulation promotes the differentiation and maturation of goblet cells through the TRPA1‐ERK pathway, indicating that the absence of mechanical stimulation may be the main cause of defects in the goblet cells of the defunctioned intestine. Furthermore, we found obvious fibrosis with a pro‐fibrotic microenvironment in the defunctioned intestine and identified that monocytes may be important targets for faecal diversion to alleviate CD. Conclusions This study revealed the different transcription landscapes of various cell subsets and the potential underlying mechanisms within the defunctioned intestine, when compared to the functional intestine, based on the background of ileal faecal diversion. These findings provide novel insights for understanding the physiological and pathological roles of the faecal stream in the intestine.
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