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Deoxycholic acid-stimulated macrophage-derived exosomes promote spasmolytic polypeptide-expressing metaplasia in the stomach

脱氧胆酸 微泡 巨噬细胞 生物 炎症 微泡 体内 体外 细胞生物学 化学 分子生物学 生物化学 胆汁酸 免疫学 生物技术 小RNA 基因
作者
Xianjun Xu,Jinnian Cheng,Shengzheng Luo,Xiaoyuan Gong,Dan Huang,Jingxian Xu,Yueqin Qian,Xinjian Wan,Hui Zhou
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier]
卷期号:524 (3): 649-655 被引量:23
标识
DOI:10.1016/j.bbrc.2020.01.159
摘要

Spasmolytic polypeptide-expressing metaplasia (SPEM) is an important risk factor for the occurrence of gastric cancer. It may be driven by a chronic inflammatory environment in which macrophage is involved. Studies have shown that intestinal metaplasia may originate from SPEM, and bile acid-induced chronic inflammation plays an important role in the process of intestinal metaplasia. However, whether bile acids are involved in the development of SPEM and the specific mechanism are unclear. Meanwhile, macrophages are known to be involved in inflammation regulation by releasing various factors, including exosomes. In this study, we hypothesized that the exosomes released from macrophages stimulated by deoxycholic acid participated in the development of SPME. In vivo, mice were gavaged with deoxycholic acid for 4 weeks, and gastric tissues were harvested. In vitro, deoxycholic acid-induced macrophage-derived exosomes were isolated by ultracentrifugation and cocultured with the gastric organoids of mice. Immunofluorescence staining and quantitative real-time PCR were used to analyze markers of macrophages and SPEM. In vivo, after 4 weeks of deoxycholic acid intragastric administration, macrophage markers (F4/80) and SPEM markers (TFF2 and GSII lectin) were increased in from treated mice compared with those from normal control mice. In vitro, macrophage-derived exosomes labeled with PKH67 were internalized by gastric organoids. Deoxycholic acid-induced macrophage-derived exosomes increased the expression of SPEM markers (TFF2 and GSII lectin) in gastric organoids compared to exosomes derived from macrophages without deoxycholic acid stimulation. Macrophage-derived exosomes may be a novel mechanism by which deoxycholic acid promotes SPEM.
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