Bone Metastasis Initiation Is Coupled with Bone Remodeling through Osteogenic Differentiation of NG2+ Cells

Author:

Zhang Weijie123ORCID,Xu Zhan123ORCID,Hao Xiaoxin123ORCID,He Tiancheng4ORCID,Li Jiasong4ORCID,Shen Yichao123ORCID,Liu Kai4ORCID,Gao Yang123ORCID,Liu Jun123ORCID,Edwards David G.123ORCID,Muscarella Aaron M.123ORCID,Wu Ling123ORCID,Yu Liqun123ORCID,Xu Longyong123ORCID,Chen Xi123ORCID,Wu Yi-Hsuan123ORCID,Bado Igor L.123ORCID,Ding Yunfeng123ORCID,Aguirre Sergio123ORCID,Wang Hai123ORCID,Gugala Zbigniew5ORCID,Satcher Robert L.6ORCID,Wong Stephen T.C.234ORCID,Zhang Xiang H.-F.1237ORCID

Affiliation:

1. 1Lester and Sue Smith Breast Center, Baylor College of Medicine, Houston, Texas.

2. 2Dan L. Duncan Cancer Center, Baylor College of Medicine, Houston, Texas.

3. 3Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas.

4. 4Department of Systems Medicine and Bioengineering and Translational Biophotonics Laboratory, Houston Methodist Cancer Center, Houston, Texas.

5. 5Department of Orthopedic Surgery and Rehabilitation, University of Texas Medical Branch, Galveston, Texas.

6. 6Department of Orthopedic Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas.

7. 7McNair Medical Institute, Baylor College of Medicine, Houston, Texas.

Abstract

Abstract The bone microenvironment is dynamic and undergoes remodeling in normal and pathologic conditions. Whether such remodeling affects disseminated tumor cells (DTC) and bone metastasis remains poorly understood. Here, we demonstrated that pathologic fractures increase metastatic colonization around the injury. NG2+ cells are a common participant in bone metastasis initiation and bone remodeling in both homeostatic and fractured conditions. NG2+ bone mesenchymal stem/stromal cells (BMSC) often colocalize with DTCs in the perivascular niche. Both DTCs and NG2+ BMSCs are recruited to remodeling sites. Ablation of NG2+ lineage impaired bone remodeling and concurrently diminished metastatic colonization. In cocultures, NG2+ BMSCs, especially when undergoing osteodifferentiation, enhanced cancer cell proliferation and migration. Knockout of N-cadherin in NG2+ cells abolished these effects in vitro and phenocopied NG2+ lineage depletion in vivo. These findings uncover dual roles of NG2+ cells in metastasis and remodeling and indicate that osteodifferentiation of BMSCs promotes metastasis initiation via N-cadherin–mediated cell–cell interaction. Significance: The bone colonization of cancer cells occurs in an environment that undergoes constant remodeling. Our study provides mechanistic insights into how bone homeostasis and pathologic repair lead to the outgrowth of disseminated cancer cells, thereby opening new directions for further etiologic and epidemiologic studies of tumor recurrences. This article is highlighted in the In This Issue feature, p. 247

Funder

National Cancer Institute

U.S. Department of Defense

Breast Cancer Research Foundation

Robert and Janice McNair Foundation

John S. Dunn Foundation

Publisher

American Association for Cancer Research (AACR)

Subject

Oncology

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