疾病
生物
前瞻性队列研究
内科学
生物信息学
入射(几何)
下调和上调
梅德林
肿瘤科
免疫学
疾病监测
细胞
作者
Haoran Shen,C L Wang,Xiurui Lv,Zichuan Gao,Yueqin Qiu,Zhengke Zhi,Jie Tang,Chunxia Du Chunxia Du,Ruyi Zhang,Hongxing Li,Weibing Tang
出处
期刊:Epigenomics
[Future Medicine]
日期:2026-03-04
卷期号:18 (3): 293-302
标识
DOI:10.1080/17501911.2026.2647714
摘要
BACKGROUND: Hirschsprung's disease (HSCR) is caused by defective enteric neural crest cell (ENCC) migration. Exosome-transmitted microRNAs are implicated in HSCR pathogenesis, but mechanisms remain unclear. METHODS: Plasma exosomes and colon tissues were collected from HSCR patients and controls. We assessed the effects of exosomal miR-323a-3p on the proliferation and migration of immortalized ENCC-derived neural cell line (iENC) in vitro using CCK-8, EdU and Transwell assays, and its impact on ENCC migration in vivo using a zebrafish model. RESULTS: = 0.0043). Exosomal miR-323a-3p was taken up by iENCs and suppressed their proliferation and migration. TET2 was identified as a potential miR-323a-3p target. TET2 was downregulated in HSCR aganglionic tissues, and its knockdown inhibited iENC proliferation and migration. In the zebrafish model, exosomal miR-323a-3p impaired distal ENCC colonization. CONCLUSION: Exosomal miR-323a-3p is upregulated in HSCR and associated with impaired ENCC-derived cell function, potentially via TET2. These findings suggest exosome-transmitted microRNA-323a-3p participated in the occurrence of Hirschsprung's disease and exhibit promising potential as a prospective diagnostic biomarker.
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