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Single‐cell RNA sequencing reveals immune microenvironment of small cell lung cancer‐associated malignant pleural effusion
by
Wang, Shuyan
, Li, Ping
, Qin, Jiangyue
, Chen, Mei
, Shen, Yongchun
, Wen, Fuqiang
, An, Jing
, Zeng, Tingting
, Hu, Xueru
in
Approximation
/ Bioinformatics
/ Cancer therapies
/ Case Report
/ Case Reports
/ Cell Differentiation
/ Chemotherapy
/ Gene expression
/ Humans
/ immune microenvironment
/ Immunotherapy
/ Ligands
/ Lung cancer
/ Lung Neoplasms - pathology
/ Lymphocytes
/ malignant pleural effusion
/ Plasma
/ Pleural Effusion
/ Pleural Effusion, Malignant - genetics
/ Pleural Effusion, Malignant - pathology
/ Sequence Analysis, RNA
/ single‐cell transcriptome sequencing
/ small cell lung cancer
/ Small Cell Lung Carcinoma - complications
/ Small Cell Lung Carcinoma - genetics
/ SOXC Transcription Factors - genetics
/ Tumor Microenvironment - genetics
2024
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Single‐cell RNA sequencing reveals immune microenvironment of small cell lung cancer‐associated malignant pleural effusion
by
Wang, Shuyan
, Li, Ping
, Qin, Jiangyue
, Chen, Mei
, Shen, Yongchun
, Wen, Fuqiang
, An, Jing
, Zeng, Tingting
, Hu, Xueru
in
Approximation
/ Bioinformatics
/ Cancer therapies
/ Case Report
/ Case Reports
/ Cell Differentiation
/ Chemotherapy
/ Gene expression
/ Humans
/ immune microenvironment
/ Immunotherapy
/ Ligands
/ Lung cancer
/ Lung Neoplasms - pathology
/ Lymphocytes
/ malignant pleural effusion
/ Plasma
/ Pleural Effusion
/ Pleural Effusion, Malignant - genetics
/ Pleural Effusion, Malignant - pathology
/ Sequence Analysis, RNA
/ single‐cell transcriptome sequencing
/ small cell lung cancer
/ Small Cell Lung Carcinoma - complications
/ Small Cell Lung Carcinoma - genetics
/ SOXC Transcription Factors - genetics
/ Tumor Microenvironment - genetics
2024
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Single‐cell RNA sequencing reveals immune microenvironment of small cell lung cancer‐associated malignant pleural effusion
by
Wang, Shuyan
, Li, Ping
, Qin, Jiangyue
, Chen, Mei
, Shen, Yongchun
, Wen, Fuqiang
, An, Jing
, Zeng, Tingting
, Hu, Xueru
in
Approximation
/ Bioinformatics
/ Cancer therapies
/ Case Report
/ Case Reports
/ Cell Differentiation
/ Chemotherapy
/ Gene expression
/ Humans
/ immune microenvironment
/ Immunotherapy
/ Ligands
/ Lung cancer
/ Lung Neoplasms - pathology
/ Lymphocytes
/ malignant pleural effusion
/ Plasma
/ Pleural Effusion
/ Pleural Effusion, Malignant - genetics
/ Pleural Effusion, Malignant - pathology
/ Sequence Analysis, RNA
/ single‐cell transcriptome sequencing
/ small cell lung cancer
/ Small Cell Lung Carcinoma - complications
/ Small Cell Lung Carcinoma - genetics
/ SOXC Transcription Factors - genetics
/ Tumor Microenvironment - genetics
2024
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Single‐cell RNA sequencing reveals immune microenvironment of small cell lung cancer‐associated malignant pleural effusion
Journal Article
Single‐cell RNA sequencing reveals immune microenvironment of small cell lung cancer‐associated malignant pleural effusion
2024
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Overview
We used 10 × genomics single‐cell transcriptome sequencing technology to reveal the tumor immune microenvironment characteristics of small cell lung cancer (SCLC) in a patient with malignant pleural effusion (MPE). A total of 8008 high‐quality cells were finally obtained for subsequent bioinformatic analysis, which were divided into 10 cell clusters further identified as B cells, T cells, myeloid cells, NK cells, and cancer cells. Such SCLC related genes as NOTCH1, MYC, TSC22D1, SOX4, BLNK, YBX3, VIM, CD8A, CD8B, and KLF6 were expressed in different degrees during differentiation of T and B cells. Different ligands and receptors between T, B and tumor cells almost interact through MHC II, IL‐16, galectin, and APP signaling pathway. We use 10 × genomics single‐cell transcriptome sequencing technology to reveal the tumor immune microenvironment characteristics of small cell lung cancer (SCLC) in malignant pleural effusion (MPE). A total of 8008 high‐quality cells were obtained and divided as B cells, T cells, myeloid cells, NK cells, and cancer cells (a). Such SCLC related genes as NOTCH1, MYC, TSC22D1, SOX4, BLNK, YBX3, VIM, CD8A, CD8B, and KLF6 were expressed in different degrees during differentiation of CD4+ T cells (b), CD8+ T cells (c), and B cells (d). Different ligands and receptors between T, B, and tumor cells almost interact through MHC II (e), IL‐16 (f), galectin (g), and APP (h) signaling pathway.
Publisher
John Wiley & Sons Australia, Ltd,John Wiley & Sons, Inc,Wiley
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