Single-Cell Transcriptomic Analysis of Primary and Metastatic Tumor Ecosystems in Esophageal Squamous Cell Carcinoma.
Yongxu JiaBai-Feng ZhangChunyang ZhangDora Lai-Wan KwongZhiwei ChangShanshan LiZehua WangHuiqiong HanJing LiYali ZhongXin SuiLi FuXin-Yuan GuanYanru QinPublished in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2023)
Lymph node metastasis, the leading cause of mortality in esophageal squamous carcinoma (ESCC) with a highly complex tumor microenvironment, remains underexplored. Here, the transcriptomes of 85 263 single cells are analyzed from four ESCC patients with lymph node metastases. Strikingly, it is observed that the metastatic microenvironment undergoes the emergence or expansion of interferon induced IFIT3 + T, B cells, and immunosuppressive cells such as APOC1 + APOE + macrophages and myofibroblasts with highly expression of immunoglobulin genes (IGKC) and extracellular matrix component and matrix metallopeptidase genes. A poor-prognostic epithelial-immune dual expression program regulating immune effector processes, whose activity is significantly enhanced in metastatic malignant epithelial cells and enriched in CD74 + CXCR4 + and major histocompatibility complex (MHC) class II genes upregulated malignant epithelia cells is discovered. Comparing with primary tumor, differential intercellular communications of metastatic ESCC microenvironment are revealed and furtherly validated via multiplexed immunofluorescence and immunohistochemistry staining, which mainly rely on the crosstalk of APOC1 + APOE + macrophages with tumor and stromal cell. The data highlight potential molecular mechanisms that shape the lymph-node metastatic microenvironment and may inform drug discovery and the development of new strategies to target these prometastatic nontumor components for inhibiting tumor growth and overcoming metastasis to improve clinical outcomes.
Keyphrases
- single cell
- squamous cell carcinoma
- lymph node
- induced apoptosis
- small cell lung cancer
- lymph node metastasis
- cell cycle arrest
- extracellular matrix
- stem cells
- rna seq
- poor prognosis
- genome wide
- drug discovery
- signaling pathway
- high fat diet
- cell death
- immune response
- type diabetes
- oxidative stress
- bone marrow
- gene expression
- cardiovascular disease
- low grade
- radiation therapy
- electronic health record
- quality improvement
- dna methylation
- risk factors
- sentinel lymph node
- coronary artery disease
- big data
- drug induced
- genome wide identification
- bioinformatics analysis
- long non coding rna
- early stage
- flow cytometry