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Single-cell transcriptomics reveals the role of Macrophage-Naïve CD4 + T cell interaction in the immunosuppressive microenvironment of primary liver carcinoma
by
Li, Wenjing
, Liu, Jiahui
, Mo, Zhuomao
, Chen, Yihan
, Huang, Bijun
, Liu, Daiyuan
, Yu, Ling
, Luo, Jin
, Zhang, Shijun
in
Analysis
/ Antimitotic agents
/ Antineoplastic agents
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer microenvironment
/ Care and treatment
/ CD4 antigen
/ Cell cycle
/ Cell interactions
/ Cirrhosis
/ Clustering
/ Data collection
/ Datasets
/ Diagnosis
/ Dosage and administration
/ Drug delivery
/ Enzyme inhibitors
/ Gene expression
/ Genetic aspects
/ Genomes
/ Hepatitis
/ Immunosuppression
/ Immunosuppressive agents
/ Immunotherapy
/ Kinesin
/ Ligands
/ Liver
/ Liver cancer
/ Liver cirrhosis
/ Lymphocytes
/ Lymphocytes T
/ Macrophage
/ Macrophages
/ Medicine/Public Health
/ Metastases
/ Microenvironments
/ Naïve CD4 + T cell
/ Patient outcomes
/ Polo-like kinase
/ Polo-like kinase 1
/ Quality control
/ Single cell transcriptomic
/ Transcriptomics
/ Tumor microenvironment
/ Tumors
2022
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Single-cell transcriptomics reveals the role of Macrophage-Naïve CD4 + T cell interaction in the immunosuppressive microenvironment of primary liver carcinoma
by
Li, Wenjing
, Liu, Jiahui
, Mo, Zhuomao
, Chen, Yihan
, Huang, Bijun
, Liu, Daiyuan
, Yu, Ling
, Luo, Jin
, Zhang, Shijun
in
Analysis
/ Antimitotic agents
/ Antineoplastic agents
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer microenvironment
/ Care and treatment
/ CD4 antigen
/ Cell cycle
/ Cell interactions
/ Cirrhosis
/ Clustering
/ Data collection
/ Datasets
/ Diagnosis
/ Dosage and administration
/ Drug delivery
/ Enzyme inhibitors
/ Gene expression
/ Genetic aspects
/ Genomes
/ Hepatitis
/ Immunosuppression
/ Immunosuppressive agents
/ Immunotherapy
/ Kinesin
/ Ligands
/ Liver
/ Liver cancer
/ Liver cirrhosis
/ Lymphocytes
/ Lymphocytes T
/ Macrophage
/ Macrophages
/ Medicine/Public Health
/ Metastases
/ Microenvironments
/ Naïve CD4 + T cell
/ Patient outcomes
/ Polo-like kinase
/ Polo-like kinase 1
/ Quality control
/ Single cell transcriptomic
/ Transcriptomics
/ Tumor microenvironment
/ Tumors
2022
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Single-cell transcriptomics reveals the role of Macrophage-Naïve CD4 + T cell interaction in the immunosuppressive microenvironment of primary liver carcinoma
by
Li, Wenjing
, Liu, Jiahui
, Mo, Zhuomao
, Chen, Yihan
, Huang, Bijun
, Liu, Daiyuan
, Yu, Ling
, Luo, Jin
, Zhang, Shijun
in
Analysis
/ Antimitotic agents
/ Antineoplastic agents
/ Biomedical and Life Sciences
/ Biomedicine
/ Cancer microenvironment
/ Care and treatment
/ CD4 antigen
/ Cell cycle
/ Cell interactions
/ Cirrhosis
/ Clustering
/ Data collection
/ Datasets
/ Diagnosis
/ Dosage and administration
/ Drug delivery
/ Enzyme inhibitors
/ Gene expression
/ Genetic aspects
/ Genomes
/ Hepatitis
/ Immunosuppression
/ Immunosuppressive agents
/ Immunotherapy
/ Kinesin
/ Ligands
/ Liver
/ Liver cancer
/ Liver cirrhosis
/ Lymphocytes
/ Lymphocytes T
/ Macrophage
/ Macrophages
/ Medicine/Public Health
/ Metastases
/ Microenvironments
/ Naïve CD4 + T cell
/ Patient outcomes
/ Polo-like kinase
/ Polo-like kinase 1
/ Quality control
/ Single cell transcriptomic
/ Transcriptomics
/ Tumor microenvironment
/ Tumors
2022
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Single-cell transcriptomics reveals the role of Macrophage-Naïve CD4 + T cell interaction in the immunosuppressive microenvironment of primary liver carcinoma
Journal Article
Single-cell transcriptomics reveals the role of Macrophage-Naïve CD4 + T cell interaction in the immunosuppressive microenvironment of primary liver carcinoma
2022
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Overview
Background
Liver carcinoma generally presents as an immunosuppressive microenvironment that promotes tumor evasion. The intercellular crosstalk of immune cells significantly influences the construction of an immunosuppressive microenvironment. This study aimed to investigate the important interactions between immune cells and their targeting drugs in liver carcinoma, by using single-cell and bulk transcriptomic data.
Methods
Single-cell and bulk transcriptomic data were retrieved from Gene Expression Omnibus (GSE159977, GSE136103, and GSE125449) and The Cancer Genome Atlas (TGCA-LIHC), respectively. Quality control, dimension reduction, clustering, and annotation were performed according to the Scanpy workflow based on Python. Cell–cell interactions were explored using the CellPhone database and CellChat. Trajectory analysis was executed using a partition-based graph abstraction method. The transcriptomic factors (TFs) were predicted using single-cell regulatory network inference and clustering (SCENIC). The target genes from TFs were used to establish a related score based on the TCGA cohort; this score was subsequently validated by survival, gene set enrichment, and immune cell infiltration analyses. Drug prediction was performed based on the Cancer Therapeutics Response Portal and PRISM Repurposing datasets.
Results
Thirty-one patients at four different states, including health, hepatitis, cirrhosis, and cancer, were enrolled in this study. After dimension reduction and clustering, twenty-two clusters were identified. Cell–cell interaction analyses indicated that macrophage-naive CD4 + T cell interaction significantly affect cancerous state. In brief, macrophages interact with naive CD4 + T cells via different pathways in different states. The results of SCENIC indicated that macrophages present in cancer cells were similar to those present during cirrhosis. A macrophage-naive CD4 + T cell (MNT) score was generated by the SCENIC-derived target genes. Based on the MNT score, five relevant drugs (inhibitor of polo-like kinase 1, inhibitor of kinesin family member 11, dabrafenib, ispinesib, and epothilone-b) were predicted.
Conclusions
This study reveals the crucial role of macrophage-naive CD4 + T cell interaction in the immunosuppressive microenvironment of liver carcinoma. Tumor-associated macrophages may be derived from cirrhosis and can initiate liver carcinoma. Predictive drugs that target the macrophage-naive CD4 + T cell interaction may help to improve the immunosuppressive microenvironment and prevent immune evasion. The relevant mechanisms need to be further validated in experiments and cohort studies.
Graphical Abstract
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