Single-cell transcriptomic analysis of the tumor ecosystems underlying initiation and progression of papillary thyroid carcinoma

Weilin Pu(Fudan University), Xiao Shi(Shanghai Medical College of Fudan University), Pengcheng Yu(Shanghai Medical College of Fudan University), Meiying Zhang(Chinese Academy of Sciences), Zhiyan Liu(Shanghai Jiao Tong University), Licheng Tan(Shanghai Medical College of Fudan University), Peizhen Han(Shanghai Medical College of Fudan University), Yu Wang(Shanghai Medical College of Fudan University), Dongmei Ji(Shanghai Medical College of Fudan University), Hualei Gan(Shanghai Medical College of Fudan University), Wenjun Wei(Shanghai Medical College of Fudan University), Zhong‐Wu Lu(Shanghai Medical College of Fudan University), Ning Qu(Shanghai Medical College of Fudan University), Jia‐Qian Hu(Shanghai Medical College of Fudan University), Xiaohua Hu(Fudan University), Zaili Luo(Cincinnati Children's Hospital Medical Center), Huajun Li(Jiangsu Hengrui Medicine (China)), Qinghai Ji(Shanghai Medical College of Fudan University), Jiucun Wang(Fudan University), Xiaoming Zhang(Chinese Academy of Sciences), Yulong Wang(Shanghai Medical College of Fudan University)
Nature Communications
October 18, 2021
Cited by 277Open Access
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Abstract

The tumor ecosystem of papillary thyroid carcinoma (PTC) is poorly characterized. Using single-cell RNA sequencing, we profile transcriptomes of 158,577 cells from 11 patients' paratumors, localized/advanced tumors, initially-treated/recurrent lymph nodes and radioactive iodine (RAI)-refractory distant metastases, covering comprehensive clinical courses of PTC. Our data identifies a "cancer-primed" premalignant thyrocyte population with normal morphology but altered transcriptomes. Along the developmental trajectory, we also discover three phenotypes of malignant thyrocytes (follicular-like, partial-epithelial-mesenchymal-transition-like, dedifferentiation-like), whose composition shapes bulk molecular subtypes, tumor characteristics and RAI responses. Furthermore, we uncover a distinct BRAF-like-B subtype with predominant dedifferentiation-like thyrocytes, enriched cancer-associated fibroblasts, worse prognosis and promising prospect of immunotherapy. Moreover, potential vascular-immune crosstalk in PTC provides theoretical basis for combined anti-angiogenic and immunotherapy. Together, our findings provide insight into the PTC ecosystem that suggests potential prognostic and therapeutic implications.


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