Back to Search
Start Over
Scaffold stiffness influences breast cancer cell invasion via EGFR-linked Mena upregulation and matrix remodeling.
- Source :
-
Matrix biology : journal of the International Society for Matrix Biology [Matrix Biol] 2020 Jan; Vol. 85-86, pp. 80-93. Date of Electronic Publication: 2019 Jul 16. - Publication Year :
- 2020
-
Abstract
- Clinically, increased breast tumor stiffness is associated with metastasis and poorer outcomes. Yet, in vitro studies of tumor cells in 3D scaffolds have found decreased invasion in stiffer environments. To resolve this apparent contradiction, MDA-MB-231 breast tumor spheroids were embedded in 'low' (2 kPa) and 'high' (12 kPa) stiffness 3D hydrogels comprised of methacrylated gelatin/collagen I, a material that allows for physiologically-relevant changes in stiffness while matrix density is held constant. Cells in high stiffness materials exhibited delayed invasion, but more abundant actin-enriched protrusions, compared to those in low stiffness. We find that cells in high stiffness had increased expression of Mena, an invadopodia protein associated with metastasis in breast cancer, as a result of EGFR and PLCγ1 activation. As invadopodia promote invasion through matrix remodeling, we examined matrix organization and determined that spheroids in high stiffness displayed a large fibronectin halo. Interestingly, this halo did not result from increased fibronectin production, but rather from Mena/α5 integrin dependent organization. In high stiffness environments, FN1 knockout inhibited invasion while addition of exogenous cellular fibronectin lessened the invasion delay. Analysis of fibronectin isoforms demonstrated that EDA-fibronectin promoted invasion and that clinical invasive breast cancer specimens displayed elevated EDA-fibronectin. Combined, our data support a mechanism by which breast cancer cells respond to stiffness and render the environment conducive to invasion. More broadly, these findings provide important insight on the roles of matrix stiffness, composition, and organization in promoting tumor invasion.<br />Competing Interests: Declaration of Competing Interest The authors declare no competing interests.<br /> (Copyright © 2019 International Society of Matrix Biology. Published by Elsevier B.V. All rights reserved.)
- Subjects :
- Breast Neoplasms genetics
Breast Neoplasms metabolism
Cell Culture Techniques
Cell Line, Tumor
Cell Movement
ErbB Receptors metabolism
Extracellular Matrix metabolism
Female
Fibronectins genetics
Fibronectins metabolism
Gene Knockdown Techniques
Humans
Hydrogels
Neoplasm Invasiveness
Phospholipase C gamma genetics
Spheroids, Cellular cytology
Spheroids, Cellular metabolism
Spheroids, Cellular pathology
Transcriptional Activation
Breast Neoplasms pathology
Extracellular Matrix pathology
Microfilament Proteins metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1569-1802
- Volume :
- 85-86
- Database :
- MEDLINE
- Journal :
- Matrix biology : journal of the International Society for Matrix Biology
- Publication Type :
- Academic Journal
- Accession number :
- 31323325
- Full Text :
- https://doi.org/10.1016/j.matbio.2019.07.006