Single cell profiling of bone metastasis ecosystems from multiple cancer types reveals convergent and divergent mechanisms of bone colonization

Fengshuo Liu, Yunfeng Ding,Zhan Xu,Xiaoxin Hao,Tianhong Pan, George Miles,Yi-Hsuan Wu, Jun Liu,Igor L. Bado,Weijie Zhang,Ling Wu,Yang Gao,Liqun Yu,David G. Edwards, Hilda L. Chan,Sergio Aguirre, Michael Warren Dieffenbach, Elina Chen,Yichao Shen, Dane Hoffman, Luis Becerra Dominguez,Charlotte Helena Rivas, Xiang Chen, Hai Wang,Zbigniew Gugala,Robert L. Satcher, Xiang H.-F. Zhang

crossref(2024)

引用 0|浏览7
暂无评分
摘要
Bone represents congenial soil for metastatic seeds and is frequently affected by metastasis of multiple cancer types. The histological and molecular characteristics of bone metastases (BMs) are diverse but poorly understood. Herein, we performed single-cell RNA-seq on 34 BMs from 6 cancer types and identified 3 ecosystem archetypes characterized by enrichment of macrophages/osteoclasts (Mφ-OC), regulatory/exhausted T cells (Treg-Tex), and monocytes (Mono), respectively. Breast cancer BMs are mostly the Mφ-OC archetype driven by the osteolytic vicious cycle, whereas kidney cancers BMs mainly belong to the Treg-Tex archetype that lacks osteoclasts. Lung cancers BMs evenly distributed across all archetypes. Further analyses revealed parallel mechanisms of immunosuppression and bone remodeling. Elevated estrogen signaling distinguishes macrophages in the Mφ-OC subtype, which was investigated in a companion study. Together, we elucidated that divergent mechanisms toward bone colonization and that BMs of different origins can adopt the same mechanism through convergent evolution or adaptation. HIGHLIGHTS ![Figure][1] ### Competing Interest Statement The authors have declared no competing interest. [1]: pending:yes
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要