Disrupted mitochondrial morphology and function exacerbate inflammation in elderly-onset ulcerative colitis.

IF 5.2 2区 医学 Q1 GERIATRICS & GERONTOLOGY Immunity & Ageing Pub Date : 2025-01-10 DOI:10.1186/s12979-024-00494-5
Mengmeng Zhang, Hong Lv, Xiaoyin Bai, Gechong Ruan, Qing Li, Kai Lin, Hong Yang, Jiaming Qian
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Abstract

Background: The characteristics of ulcerative colitis (UC) in the elderly are quite different from the young population. Mitochondrial injury is a key mechanism regulating both aging and inflammation. This study aims to reveal the role of mitochondrial damage in the pathogenesis of adult- and elderly-onset UC.

Methods: RNA-sequencing of colonic mucosa from adult- and elderly-onset UC patients was performed. Mitochondria-related differentially expressive genes (mDEGs) and immune cell infiltration analysis were identified and performed in colonic tissues from UC patients. Mice aged 6-8 weeks and 20-24 months were administered 2% dextran sodium sulphate (DSS) for 7 days to induce colitis. Mitochondrial morphological changes and ATP levels were evaluated in the colons of mice. Mechanistically, we explored the association of key mDEG with reactive oxygen species (ROS), oxygen consumption rates, NLRP3/IL-1β pathway in HCT116 cell line.

Results: Thirty mDEGs were identified between adult- and elderly-onset UC, which were related primarily to mitochondrial respiratory function and also had significant correlation with different infiltrates of immune cells. Compared with young colitis mice, DSS-induced colitis in the aged mice exhibited more severe inflammation, damaged mitochondrial structure and lower ATP levels in colonic tissues. ALDH1L1 was identified as a hub DEG through protein-protein interaction networks of RNA-seq, which was downregulated in UC patients or colitis mice versus healthy controls. In tumor necrosis factor-alpha-stimulated HCT116 cells, mitochondrial ROS, NLRP3 and IL-1β expression increased less and mitochondrial respiration had an upregulated trend after knocking down ALDH1L1.

Conclusion: There are significant differences in mitochondrial structure, ATP production and mitochondria-related gene expression between adult- and elderly-onset UC, which have a potential link with cytokine pathways and immune microenvironment. The more prominent mitochondrial injury may be a key factor for more severe inflammatory response and poorer outcome in elderly-onset UC.

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破坏线粒体形态和功能加剧炎症在老年发病的溃疡性结肠炎。
背景:老年人溃疡性结肠炎(UC)的特点与年轻人有很大不同。线粒体损伤是调节衰老和炎症的关键机制。本研究旨在揭示线粒体损伤在成人和老年发性UC发病机制中的作用。方法:对成人和老年UC患者的结肠黏膜进行rna测序。在UC患者的结肠组织中鉴定并进行了线粒体相关差异表达基因(mDEGs)和免疫细胞浸润分析。6-8周龄和20-24月龄小鼠给予2%葡聚糖硫酸钠(DSS)诱导结肠炎7 d。观察小鼠结肠线粒体形态变化和ATP水平。在机制上,我们探讨了HCT116细胞系中关键mDEG与活性氧(ROS)、耗氧量、NLRP3/IL-1β通路的关系。结果:在成年性和老年性UC中鉴定出30个mdeg,主要与线粒体呼吸功能有关,并与不同的免疫细胞浸润程度有显著相关性。与年轻结肠炎小鼠相比,dss诱导的老年结肠炎小鼠炎症更严重,线粒体结构受损,结肠组织ATP水平降低。通过RNA-seq蛋白-蛋白相互作用网络,ALDH1L1被鉴定为枢纽DEG,与健康对照组相比,UC患者或结肠炎小鼠的ALDH1L1下调。在肿瘤坏死因子α刺激的HCT116细胞中,敲低ALDH1L1后,线粒体ROS、NLRP3和IL-1β表达增加较少,线粒体呼吸有上调趋势。结论:成年型和老年型UC在线粒体结构、ATP生成和线粒体相关基因表达方面存在显著差异,可能与细胞因子通路和免疫微环境有关。更突出的线粒体损伤可能是导致老年性UC炎症反应更严重和预后更差的关键因素。
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来源期刊
Immunity & Ageing
Immunity & Ageing GERIATRICS & GERONTOLOGY-IMMUNOLOGY
CiteScore
10.20
自引率
3.80%
发文量
55
期刊介绍: Immunity & Ageing is a specialist open access journal that was first published in 2004. The journal focuses on the impact of ageing on immune systems, the influence of aged immune systems on organismal well-being and longevity, age-associated diseases with immune etiology, and potential immune interventions to increase health span. All articles published in Immunity & Ageing are indexed in the following databases: Biological Abstracts, BIOSIS, CAS, Citebase, DOAJ, Embase, Google Scholar, Journal Citation Reports/Science Edition, OAIster, PubMed, PubMed Central, Science Citation Index Expanded, SCImago, Scopus, SOCOLAR, and Zetoc.
期刊最新文献
Exploring the link between fat-soluble vitamins and aging-associated immune system status: a literature review. Effect and mechanism of miRNA-144-5p-regulated autophagy in older adults with Sarcopenia. The relationship between biological aging and psoriasis: evidence from three observational studies. The state of the art in anti-aging: plant-based phytochemicals for skin care. Disrupted mitochondrial morphology and function exacerbate inflammation in elderly-onset ulcerative colitis.
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