Abnormal Cellular Populations Shape Thymic Epithelial Tumor Heterogeneity and Anti‐Tumor by Blocking Metabolic Interactions in Organoids

Author:

Liu Xuefei123,Wang Changchun4,Huang Yueyu1,Lv Qiaoli5,Yu Chang6,Ying Jianghua7,Duan Lianhui2,Guo Yangzhong5,Huang Guanyin2,Shen Wenhui1,Jiang Ming89,Mao Weimin510,Zuo Zhixiang11,Zhao An15ORCID

Affiliation:

1. Zhejiang Cancer Institute Zhejiang Cancer Hospital Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou Zhejiang 310022 China

2. Department of Biochemistry School of Medicine Southern University of Science and Technology Shenzhen 518055 China

3. Shenzhen Institute of Pediatrics Shenzhen Children's Hospital Shenzhen 518026 China

4. Department of Thoracic Oncology Zhejiang Cancer Hospital Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou Zhejiang 310022 China

5. Thoracic Oncology Laboratory Jiangxi Cancer Hospital Nanchang Medical College Nanchang Jiangxi 330029 China

6. Department of Pathology Zhejiang Cancer Hospital Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou Zhejiang 310022 China

7. Department of Ultrasound Zhejiang Cancer Hospital Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou Zhejiang 310022 China

8. Center for Genetic Medicine The Fourth Affiliated Hospital Zhejiang University School of Medicine Hangzhou Zhejiang 310011 China

9. Zhejiang Provincial Key Laboratory of Genetic & Developmental Disorders Hangzhou Zhejiang 310011 China

10. Zhejiang Provincial Key Laboratory of Diagnosis and Treatment of Thoracic Cancer Zhejiang Cancer Hospital Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou Zhejiang 310022 China

11. State Key Laboratory of Oncology in South China Collaborative Innovation Center for Cancer Medicine Sun Yat‐sen University Cancer Center Guangzhou 510308 China

Abstract

AbstractA variety of abnormal epithelial cells and immature and mature immune cells in thymic epithelial tumors (TETs) affect histopathological features, the degree of malignancy, and the response to treatment. Here, gene expression, trajectory inference, and T cell antigen receptor (TCR)‐based lineage tracking are profiled in TETs at single‐cell resolution. An original subpopulation of KRT14+ progenitor cells with a spindle cell phenotype is shown. An abnormal infiltration of immature T cells with a TCR hyper‐rearrangement state is revealed, due to the lack of CCL21+ medullary epithelial cells. For thymic carcinoma, the novel biomarkers of MSLN, CCL20, and SLC1A5 are identified and observed an elevated expression of LAG3 and HAVCR2 in malignant tumorn‐infiltrating mature T cells. These common features based on the single‐cell populations may inform pathological reclassification of TETs. Meanwhile, it is found that macrophages (MACs) attract thymic tumor cells through the LGALS9‐SLC1A5 axis, providing them with glutamine to elicit metabolic reprogramming. This MAC‐based metabolic pattern can promote malignancy progression. Additionally, an interactive immune environment in TETs is identified that correlates with the infiltration of abnormal FOXI1+ CFTR ionocytes. Collectively, the data broaden the knowledge of TET cellular ecosystems, providing a basis for tackling histopathological diagnosis and related treatment.

Funder

National Natural Science Foundation of China

Key Research and Development Program of Jiangxi Province

Publisher

Wiley

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