Single-cell dissection of prognostic architecture and immunotherap response in Helicobacter pylori infection-associated gastric cancer

幽门螺杆菌 癌症 幽门螺杆菌感染 螺杆菌 医学 生物 癌症研究 免疫学 内科学
作者
Xin Zhang,Guangyu Zhang,Shuli Sang,Yang Fei,Xiaopeng Cao,Wenge Song,Feide Liu,Jinze Che,Haoxia Tao,Hongwei Wang,Lihua Zhang,Yiyan Guan,Shipeng Rong,Lijuan Pei,Sheng Yao,Yanchun Wang,Min Zhang,Chunjie Liu
出处
期刊:eLife [eLife Sciences Publications Ltd]
卷期号:13
标识
DOI:10.7554/elife.99337.3
摘要

Most of the human gastric cancer (GC) worldwide are ascribed to Helicobacter pylori infections, which have a detrimental effect on the immunotherapy’s efficacy. Comprehensively dissecting the key cell players and molecular pathways associated with cancer immunotherapies is critical for developing novel therapeutic strategies against H. pylori infection-associated human GC. We performed a comprehensive single-cell transcriptome analysis of nine GC patients with current H. pylori infection (HpGC), three GC patients with previous H. pylori infection (ex-HpGC), six GC patients without H. pylori infection (non-HpGC), and six healthy controls (HC). We also investigated key cell players and molecular pathways associated with GC immunotherapy outcomes. We revealed the molecular heterogeneity of different cell components in GC, including epithelium, immune cells, and cancer-associated fibroblasts (CAFs) at the single-cell level. The malignant epithelium of HpGC exhibited high expression level of inflammatory and epithelial–mesenchymal transition signature, HpGC and ex-HpGC were enriched with VEGFA+ angiogenic tumor-associated macrophages (Angio-TAM) and IL11+ inflammatory CAF (iCAF), characterized by high expression levels of NECTIN2 and VEGFA/B. Additionally, we found significant correlations between the abundance of iCAF with Angio-TAM and TIGIT+ suppressive T cells, and iCAF interacted with Angio-TAM through the VEGF and ANGPTL angiogenic pathways. We also developed an immune signature and angiogenic signature and demonstrated that the iCAF abundance and angiogenic signature could predict poor immunotherapy outcomes in GC. We revealed the transcriptome characteristics and heterogeneity of various cellular constituents of HpGC patients and demonstrated that a synergistic combination of immunotherapy and anti-angiogenic targeted therapy may be an effective therapeutic modality for HpGC patients.
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