研究概要
我们在此揭示了CAC发展的新机制,确定了一个潜在的临床生物标志物,有望通过早期识别高风险IBD患者来改善癌症监测项目的效果,从而为预防性临床和治疗策略提供依据。
研究思路结论见上方概要
背景
炎症性肠病(IBD)是一种胃肠道的慢性炎症性疾病,已被确认为结直肠癌(CRC)发生的危险因素。长期存在的炎症似乎在结肠炎相关结直肠癌(CAC)中发挥核心作用。然而,CAC进展的分子机制仍不清楚。既往证据表明,分支糖基化水平调控与IBD严重程度相关的T细胞介导的免疫反应。在此,我们揭示了IBD患者的结肠T细胞受分支N-糖基化的动态调控,并与CAC发生风险相关。
方法
我们对公开可用的CAC患者人类数据集进行了糖组和免疫特征的计算机分析。此外,在一个特征明确的CAC患者队列中,我们评估了不同癌变阶段(结肠炎、异型增生和癌症)浸润结肠免疫细胞的N-糖基化谱。在Mgat5 KO小鼠中进行了体内研究,使用AOM/DSS模型诱导CAC。在CAC发展过程中,对肿瘤发展和结肠T细胞糖谱进行了表征。
结果
对人类IBD和CAC临床样本的联合分析,以及易患CAC的糖工程小鼠模型,揭示了从结肠炎到异型增生再到癌症过程中,T细胞中分支N-聚糖逐渐且动态地增加。这种糖基化转换被证明赋予T细胞抑制性特性,阻碍了有效的抗肿瘤免疫应答。在机制上,我们证明在Mgat5敲除小鼠中删除分支N-聚糖导致CAC抑制,这是由于CD8+和γδ T细胞浸润增加,有助于有效的抗肿瘤免疫应答。从临床角度来看,我们证明,在IBD患者炎症病灶中检测到的分支N-糖基化水平,当与诊断时年龄一起评估时,以83.3%的敏感性和67.9%的特异性预测CAC进展。
展开英文摘要原文
BACKGROUND AND AIMS: Inflammatory bowel disease (IBD) is a chronic inflammatory disorder of the gastrointestinal tract, established as a risk factor for colorectal cancer (CRC) development. Long-standing inflammation appears to play a central role in colitis-associated colorectal cancer (CAC). However, the molecular mechanism underlying CAC progression is still elusive. Previous evidence showed that levels of branched glycosylation regulate T-cell-mediated immune response associated with IBD severity. Here, we revealed that colonic T cells from IBD patients are dynamically regulated by branched N-glycosylation and associated with the risk of CAC development.
METHODS: We performed in silico analysis for glycome and immune profile of a publicly available human dataset of CAC patients. Additionally, in a well-characterized cohort of CAC patients, we evaluated the N-glycosylation profile of infiltrated colonic immune cells at different stages of carcinogenesis (colitis, dysplasia and cancer). In vivo studies were conducted in Mgat5 KO mice, using AOM/DSS model to induce CAC. Tumor development and colonic T cells glycoprofile were characterized during CAC development.
RESULTS: The combined analysis of human IBD and CAC clinical samples, together with glycoengineered mouse model susceptible to CAC, revealed a gradual and dynamic increase of branched N-glycans in T cells from colitis to dysplasia and cancer. This glycosylation switch was shown to impose inhibitory properties in T cells, precluding an effective antitumor immune response. Mechanistically, we demonstrated that the deletion of branched N-glycans in Mgat5 knockout mice led to CAC suppression due to increased infiltration of CD8+and γδ T cells, contributing to an effective antitumor immune response. From the clinical standpoint, we demonstrated that branched N-glycosylation levels detected in inflamed lesions from IBD patients predicted CAC progression with a sensitivity of 83.3% and specificity of 67.9% when assessed together with age at diagnosis.
CONCLUSIONS: Overall, we here disclosed a new mechanism underlying CAC development, identifying a potential clinical biomarker plausible to improve the efficacy of cancer surveillance programs through the early identification of high-risk IBD patients, for preventive clinical and therapeutic strategies.
论文信息
- 作者
- Leite-Gomes E、Silva MC、Dias AM、Fernandes Â、Faria G、Nogueira R、Santos-Pereira B、Fernandes-Mendes H
- 单位
- Institute for Research and Innovation in Health (i3S), University of Porto, Porto, Portugal.Portugal
- 期刊
- Journal of Crohn's & colitis2025 Apr 4