Mammary Gland ECM Remodeling, Stiffness, and Mechanosignaling in Normal Development and Tumor Progression

  1. Patricia J. Keely3
  1. 1Department of Medicine, Division of Medical Oncology, University of Colorado, Denver, Colorado 80045
  2. 2University of Colorado Cancer Center, Denver, Colorado 80045
  3. 3Department of Pharmacology and Laboratory for Molecular Biology, University of Wisconsin, Madison, Wisconsin 53706
  1. Correspondence: pjkeely{at}wisc.edu

Abstract

Cells of the mammary gland are in intimate contact with other cells and with the extracellular matrix (ECM), both of which provide not only a biochemical context, but a mechanical context as well. Cell-mediated contraction allows cells to sense the stiffness of their microenvironment, and respond with appropriate mechanosignaling events that regulate gene expression and differentiation. ECM composition and organization are tightly regulated throughout development of the mammary gland, resulting in corresponding regulation of the mechanical environment and proper tissue architecture. Mechanical regulation is also at play during breast carcinoma progression, as changes in ECM deposition, composition, and organization accompany breast carcinoma. These changes result in stiffer matrices that activate mechanosignaling pathways and thereby induce cell proliferation, facilitate local tumor cell invasion, and promote progression. Thus, understanding the role of forces in the mammary gland is crucial to understanding both normal developmental and pathological processes.

Footnotes

  • Editors: Mina J. Bissell, Kornelia Polyak, and Jeffrey Rosen

  • Additional Perspectives on The Mammary Gland as an Experimental Model available at www.cshperspectives.org



Also in this Collection

      | Table of Contents

      This Article

      1. Cold Spring Harb. Perspect. Biol. 3: a003228 Copyright © 2011 Cold Spring Harbor Laboratory Press; all rights reserved

      Article Category

      Updates/Comments

      1. Submit Updates/Comments
      2. No Updates/Comments published

      Share

      In this Collection