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口腔黏膜代谢组学分析揭示了网状型口腔扁平苔藓的特征性紊乱。

Metabolomics analysis of oral mucosa reveals profile perturbation in reticular oral lichen planus.

机构信息

First Affiliated Hospital, Heilongjiang University of Chinese Medicine, Harbin 150040, PR China.

Pharmacy School, Guiyang University of Chinese Medicine, Guiyang 550025, PR China.

出版信息

Clin Chim Acta. 2018 Dec;487:28-32. doi: 10.1016/j.cca.2018.09.021. Epub 2018 Sep 12.

Abstract

BACKGROUND

Oral lichen planus (OLP) is a chronic inflammatory mucosal disorder and potentially oral premalignant lesion affecting the stratified squamous epithelia. In OLP, reticular type is the most common clinical form of the disease. However, little is known about it. Metabolomics analysis may help to investigate the disease pathogenesis and to improve clinical treatment.

METHODS

Liquid chromatography (LC)-mass spectrometry (MS) system, XCMS software, SIMCA software, and OSI / SMMS software were integrated to identify differentially expressed metabolites for the pathways and pathology analysis.

RESULTS

Totally, 21 modulated metabolites were identified, whose dysregulations affected 30 metabolic pathways. Through an impact-value screen (impact-value>0.1), 8 pathways were selected as the significantly dysregulated pathways. Pathological network showed that these metabolites participated in 5 pathological processes, that is, inflammatory lesion, DNA damage and repair disorder, apoptosis process, oxidative stress injury, and abnormal energy expenditure.

CONCLUSION

The study revealed the metabolic perturbation of oral mucosa in reticular OLP, which may provide an important reference for the understanding of the pathogenesis of the disease and the discovery of therapeutic targets.

摘要

背景

口腔扁平苔藓(OLP)是一种慢性炎症性黏膜疾病,也是潜在的口腔癌前病变,影响复层鳞状上皮。在 OLP 中,网状型是最常见的疾病临床形式。然而,对其了解甚少。代谢组学分析可能有助于研究疾病发病机制并改善临床治疗。

方法

整合液相色谱(LC)-质谱(MS)系统、XCMS 软件、SIMCA 软件和 OSI/SMMS 软件,以识别差异表达的代谢物,进行通路和病理学分析。

结果

共鉴定出 21 种调节代谢物,其失调影响了 30 条代谢途径。通过影响值筛选(影响值>0.1),选择了 8 条明显失调的途径。病理网络显示,这些代谢物参与了 5 个病理过程,即炎症损伤、DNA 损伤和修复障碍、细胞凋亡过程、氧化应激损伤和异常能量消耗。

结论

本研究揭示了口腔黏膜在网状 OLP 中的代谢失调,这可能为理解疾病的发病机制和发现治疗靶点提供重要参考。

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