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Collagen plays a critical role in regulating breast cancer progression and therapeutic resistance. An improved understanding of both the features and drivers of tumor-permissive and -restrictive collagen matrices are critical to improve prognostication and develop more effective therapeutic strategies. In this study, using a combination of in vitro, in vivo and bioinformatic experiments, we show that type III collagen (Col3) plays a tumor-restrictive role in human breast cancer. We demonstrate that Col3-deficient, human fibroblasts produce tumor-permissive collagen matrices that drive cell proliferation and suppress apoptosis in non-invasive and invasive breast cancer cell lines. In human triple-negative breast cancer biopsy samples, we demonstrate elevated deposition of Col3 relative to type I collagen (Col1) in non-invasive compared to invasive regions. Similarly, bioinformatics analysis of over 1000 breast cancer patient biopsies from The Cancer Genome Atlas BRCA cohort revealed that patients with higher Col3:Col1 bulk tumor expression had improved overall, disease-free, and progression-free survival relative to those with higher Col1:Col3 expression. Using an established 3D culture model, we show that Col3 increases spheroid formation and induces the formation of lumen-like structures that resemble non-neoplastic mammary acini. Finally, our in vivo study shows co-injection of murine breast cancer cells (4T1) with rhCol3-supplemented hydrogels limits tumor growth and decreases pulmonary metastatic burden compared to controls. Taken together, these data collectively support a tumor-suppressive role for Col3 in human breast cancer and suggest that strategies that increase Col3 may provide a safe and effective therapeutic modality to limit recurrence in breast cancer patients.
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http://dx.doi.org/10.1038/s41523-024-00690-y | DOI Listing |
J Public Health (Oxf)
September 2025
Benchmark Risk Group, 121 West Wacker Dr., Suite 2800 Chicago, IL 60601, USA.
Background: There is a demand for population level research on the potential genetic-basis of mesothelioma (e.g. BRCA1-associated protein-1 [BAP1]) independent of other risk factors, such as amphibole asbestos exposure.
View Article and Find Full Text PDFAnn Surg Oncol
September 2025
Division of Advanced Surgical Oncology, Research and Development Center for New Medical Frontiers, Kitasato University School of Medicine, Sagamihara, Kanagawa, Japan.
Ann Surg Oncol
September 2025
Department of General Surgery, Abdulkadir Yuksel State Hospital, Gaziantep, Turkey.
Ann Surg Oncol
September 2025
Cincinnati Research in Outcomes and Safety in Surgery (CROSS) Research Group, Department of Surgery, University of Cincinnati College of Medicine, Cincinnati, OH, USA.
Ann Surg Oncol
September 2025
Department of Surgery, Komfo Anoyke Teaching Hospital, Kumasi, Ghana.
The International Center for the Study of Breast Cancer Subtypes (ICSBCS) has played a vital role in defining and overcoming many inequities that exist in breast cancer treatment and outcome on a global basis through capacity-building programs that improve the management of breast cancer patients across the African diaspora. ICSBCS activities also fill critical gaps in disparities research related to the genetics of ancestry. Over the past 20 years, ICSBCS teams have spearheaded landmark studies documenting the relevance of genetic African ancestry to breast cancer risk, while also improving the quality of care delivered to patients in diverse communities.
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