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MiR-125b-5p 和 miR-100-5p 作为预防颗粒物诱导的非吸烟者肺癌的生物标志物和治疗靶点

英文原题:MiR-125b-5p and miR-100-5p as Biomarkers and therapeutic targets for the prevention of particulate matter-induced non-smoker lung cancer.

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MiR-125b-5p and miR-100-5p as Biomarkers and therapeutic targets for the prevention of particulate matter-induced non-smoker lung cancer.

PubMed 2025/12/02(内容时间) PLoS One Q2 · IF 2.8(JCR 2025)

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中文摘要

非吸烟相关肺癌日益与环境因素如颗粒物(PM)暴露相关。通过深度小RNA测序,我们在肺癌患者中识别出与非癌症对照相比不同的miRNA表达模式,并按吸烟状态进行分层。

值得注意的是,hsa-miR-125b-5p和hsa-miR-100-5p在非吸烟肺癌患者中显著下调。通路富集分析显示,吸烟放大了与聚糖生物合成、信号转导和转录调控相关的通路,而非吸烟肺癌则以免疫功能障碍和代谢改变为特征,包括氧化磷酸化和NK 细胞细胞毒性。在更大队列中使用定量RT-PCR验证,确认了miR-125b-5p和miR-100-5p在非吸烟肺癌患者中的抑制。

此外,miR-203a和miR-199a-3p被确定为肺癌的潜在生物标志物,独立于吸烟状态。原代支气管/气管上皮细胞中的慢性PM暴露最初升高了miR-125b-5p和miR-100-5p表达,但长期暴露抑制了这些miRNA,同时增加了其靶基因TXNRD1和HOXA1,提示应激诱导的失调。使用miRNA模拟物的功能研究表明,miR-125b-5p和miR-100-5p抑制PM诱导的癌细胞迁移和集落形成,其中miR-125b-5p表现出更广泛的作用。这些发现强调了miR-125b-5p和miR-100-5p在PM相关肺癌进展中的关键作用及其作为生物标志物和治疗靶点的潜力。

本研究突出了吸烟者和非吸烟者肺癌发生机制的差异,为PM相关肺癌的靶向干预提供了基础。

展开英文摘要原文

Non-smoking-related lung cancer is increasingly associated with environmental factors such as particulate matter (PM) exposure. Using deep small RNA sequencing, we identified distinct miRNA expression patterns in lung cancer patients compared to non-cancer controls, stratified by smoking status.

Notably, hsa-miR-125b-5p and hsa-miR-100-5p were significantly downregulated in non-smoking lung cancer patients. Pathway enrichment analysis revealed smoking amplifies pathways related to glycan biosynthesis, signal transduction, and transcriptional regulation, while non-smoking lung cancer is characterized by immune dysfunction and metabolic alterations, including oxidative phosphorylation and natural killer cell cytotoxicity.

Validation in a larger cohort using quantitative RT-PCR confirmed the suppression of miR-125b-5p and miR-100-5p in non-smoking lung cancer patients.

Additionally, miR-203a and miR-199a-3p were identified as potential biomarkers for lung cancer, independent of smoking status. Chronic PM exposure in primary bronchial/tracheal epithelial cells initially elevated miR-125b-5p and miR-100-5p expression, but prolonged exposure suppressed these miRNAs while increasing their target genes, TXNRD1 and HOXA1, suggesting stress-induced dysregulation.

Functional studies using miRNA mimics demonstrated that miR-125b-5p and miR-100-5p suppress PM-induced cancer cell mobility and colony formation, with miR-125b-5p exhibiting broader effects.

These findings underscore the critical roles of miR-125b-5p and miR-100-5p in PM-associated lung cancer progression and their potential as biomarkers and therapeutic targets.

This study highlights distinct mechanisms of lung carcinogenesis in smokers and non-smokers, providing a foundation for targeted interventions in PM-associated lung cancer.

论文信息

作者
Han MTT、Oo TZM、Chewaskulyong B、Pornprasert S、Choocheep K、Punturee K、Kumsaiyai W、Wuttiin Y
单位
Department of Medical Technology, Faculty of Associated Medical Sciences, Chiang Mai University, Chiang Mai, Thailand.Thailand
期刊
PloS one2025
原文标识
PubMed 41329722 · DOI 10.1371/journal.pone.0337805