Xu Chen, Yang Liu, Cheng Ting, Wang Zixu, Liu Chengcheng, Shao Jing
Laboratory of Anti-Infection and Immunity, College of Integrated Chinese and Western Medicine (College of Life Science), Anhui University of Chinese Medicine, 433 Room, Zhijing Building, 350 Longzihu Road, Xinzhan District, Hefei, 230012, Anhui, P. R. China.
Institute of Integrated Traditional Chinese and Western Medicine, Anhui Academy of Chinese Medicine, Zhijing Building, 350 Longzihu Road, Xinzhan District, Hefei, 230012, Anhui, P. R. China.
Inflammation. 2025 Apr;48(2):820-838. doi: 10.1007/s10753-024-02091-6. Epub 2024 Jul 4.
Our previous research indicated that Sodium houttuyfonate (SH) can effectively ameliorate dextran sulfate sodium (DSS)-induced colitis exacerbated by Candida albicans. However, the underlying protective mechanism of SH remains unclear. Therefore, in this study, a mice colitis model was infected with C. albicans, and the total colonic miRNAs were assessed. Furthermore, the differentially expressed miRNAs were enriched, clustered, and analyzed. Moreover, based on the dual luciferase analysis of NFKBIZ modulation by miR-32-5p, the in vitro and in vivo therapeutic effects of SH on inflammatory response, fungal burden, oxidative stress, and apoptosis were assessed at transcriptional and translational levels in the presence of agonist and antagonist. A total of 1157 miRNAs were identified, 84 of which were differentially expressed. Furthermore, qRT-PCR validated that SH treatment improved 17 differentially expressed miRNAs with > fourfold upregulation or > sixfold downregulation. Similar to most differentially altered miRNA, C. albicans significantly increased Dectin-1, NF-κB, TNF-α, IL-1β, IL-17A, and decreased miR-32-5p which negatively targeted NFKBIZ. In addition, SH treatment reduced inflammatory response and fungal burden in a colitis model with C. albicans infection. Further analyses indicated that in C. albicans infected Caco2 cells, SH inhibited fungal growth, oxidative stress, and apoptosis by increasing Dectin-1, NF-κB, NFKBIZ, TNF-α, IL-1β, IL-17A, and decreasing miR-32-5p. Therefore, SH can ameliorate the severity of colitis aggravated by C. albicans via the Dectin-1/NF-κB/miR-32-5p/NFKBIZ axis.
我们之前的研究表明,鱼腥草素钠(SH)可有效改善由白色念珠菌加剧的葡聚糖硫酸钠(DSS)诱导的结肠炎。然而,SH潜在的保护机制仍不清楚。因此,在本研究中,用白色念珠菌感染小鼠结肠炎模型,并评估结肠总miRNA。此外,对差异表达的miRNA进行富集、聚类和分析。此外,基于miR-32-5p对NFKBIZ调控的双荧光素酶分析,在存在激动剂和拮抗剂的情况下,在转录和翻译水平评估SH对炎症反应、真菌负荷、氧化应激和细胞凋亡的体外和体内治疗效果。共鉴定出1157个miRNA,其中84个差异表达。此外,qRT-PCR验证SH处理可改善17个差异表达的miRNA,上调超过四倍或下调超过六倍。与大多数差异改变的miRNA相似,白色念珠菌显著增加了Dectin-1、NF-κB、TNF-α、IL-1β、IL-17A,并降低了负向靶向NFKBIZ的miR-32-5p。此外,SH处理减轻了白色念珠菌感染的结肠炎模型中的炎症反应和真菌负荷。进一步分析表明,在白色念珠菌感染的Caco2细胞中,SH通过增加Dectin-1、NF-κB、NFKBIZ、TNF-α、IL-1β、IL-17A并降低miR-32-5p来抑制真菌生长、氧化应激和细胞凋亡。因此,SH可通过Dectin-1/NF-κB/miR-32-5p/NFKBIZ轴改善白色念珠菌加重的结肠炎严重程度。