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      Balancing forces: architectural control of mechanotransduction.

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          Abstract

          All cells exist within the context of a three-dimensional microenvironment in which they are exposed to mechanical and physical cues. These cues can be disrupted through perturbations to mechanotransduction, from the nanoscale-level to the tissue-level, which compromises tensional homeostasis to promote pathologies such as cardiovascular disease and cancer. The mechanisms of such perturbations suggest that a complex interplay exists between the extracellular microenvironment and cellular function. Furthermore, sustained disruptions in tensional homeostasis can be caused by alterations in the extracellular matrix, allowing it to serve as a mechanically based memory-storage device that can perpetuate a disease or restore normal tissue behaviour.

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          Author and article information

          Journal
          Nat Rev Mol Cell Biol
          Nature reviews. Molecular cell biology
          Springer Science and Business Media LLC
          1471-0080
          1471-0072
          May 2011
          : 12
          : 5
          Affiliations
          [1 ] Department of Surgery and Center for Bioengineering and Tissue Regeneration, University of California, San Francisco (UCSF), CA, USA.
          Article
          nrm3112 NIHMS435877
          10.1038/nrm3112
          3564968
          21508987
          ef033035-8fa7-48aa-a3cc-05a1cb94229e
          History

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