Periostin+ Stromal Cells Guide Lymphovascular Invasion by Cancer Cells

Author:

Null Jamie L.1ORCID,Kim Dae Joong1ORCID,McCann James V.2ORCID,Pramoonjago Patcharin34ORCID,Fox Jay W.15ORCID,Zeng Jianhao1ORCID,Kumar Pankaj67ORCID,Edatt Lincy8ORCID,Pecot Chad V.891011ORCID,Dudley Andrew C.15ORCID

Affiliation:

1. 1Department of Microbiology, Immunology, and Cancer Biology, The University of Virginia, Charlottesville, Virginia.

2. 2Department of Cell Biology, Johns Hopkins University, Baltimore, Maryland.

3. 3Department of Pathology, The University of Virginia, Charlottesville, Virginia.

4. 4UVA Biorepository and Tissue Research Facility, Charlottesville, Virginia.

5. 5Emily Couric Comprehensive Cancer Center, The University of Virginia, Charlottesville, Virginia.

6. 6UVA Bioinformatics Core, Charlottesville, Virginia.

7. 7Department of Biochemistry and Molecular Genetics, The University of Virginia, Charlottesville, Virginia.

8. 8Lineberger Comprehensive Cancer Center, Chapel Hill, North Carolina.

9. 9Division of Hematology/Oncology, Chapel Hill, North Carolina.

10. 10UNC RNA Discovery Center, Chapel Hill, North Carolina.

11. 11Department of Medicine, Chapel Hill, North Carolina, The University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.

Abstract

Abstract Cancer cell dissemination to sentinel lymph nodes is associated with poor patient outcomes, particularly in breast cancer. The process by which cancer cells egress from the primary tumor upon interfacing with the lymphatic vasculature is complex and driven by dynamic interactions between cancer cells and stromal cells, including cancer-associated fibroblasts (CAF). The matricellular protein periostin can distinguish CAF subtypes in breast cancer and is associated with increased desmoplasia and disease recurrence in patients. However, as periostin is secreted, periostin-expressing CAFs are difficult to characterize in situ, limiting our understanding of their specific contribution to cancer progression. Here, we used in vivo genetic labeling and ablation to lineage trace periostin+ cells and characterize their functions during tumor growth and metastasis. Periostin-expressing CAFs were spatially found at periductal and perivascular margins, were enriched at lymphatic vessel peripheries, and were differentially activated by highly metastatic cancer cells versus poorly metastatic counterparts. Surprisingly, genetically depleting periostin+ CAFs slightly accelerated primary tumor growth but impaired intratumoral collagen organization and inhibited lymphatic, but not lung, metastases. Periostin ablation in CAFs impaired their ability to deposit aligned collagen matrices and inhibited cancer cell invasion through collagen and across lymphatic endothelial cell monolayers. Thus, highly metastatic cancer cells mobilize periostin-expressing CAFs in the primary tumor site that promote collagen remodeling and collective cell invasion within lymphatic vessels and ultimately to sentinel lymph nodes. Significance: Highly metastatic breast cancer cells activate a population of periostin-expressing CAFs that remodel the extracellular matrix to promote escape of cancer cells into lymphatic vessels and drive colonization of proximal lymph nodes.

Funder

National Cancer Institute

American Cancer Society

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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