Feeling Things Out: Bidirectional Signaling of the Cell–ECM Interface, Implications in the Mechanobiology of Cell Spreading, Migration, Proliferation, and Differentiation
- 01Cells and their matrix are in constant two-way communication
- 02Physical forces from the matrix guide cell behavior
- 03Focal adhesions are key hubs for this mechanical signaling
- 04This process regulates cell movement, growth, and specialization
- 05Disrupted signaling can contribute to disease progression
Cells sense and respond to the physical properties of their environment, which guides their behavior and function.
Biophysical cues stemming from the extracellular environment are rapidly transduced into discernible chemical messages (mechanotransduction) that direct cellular activities–placing the extracellular matrix (ECM) as a potent regulator of cell behavior. Dynamic reciprocity between the cell and its associated matrix is essential to the maintenance of tissue homeostasis and dysregulation of both ECM mechanical signaling, via pathological ECM turnover, and internal mechanotransduction pathways contribute to disease progression. This review covers the current understandings of the key modes of signaling used by both the cell and ECM to coregulate one another. By taking an outside-in approach, the inherent complexities and regulatory processes at each level of signaling (ECM, plasma membrane, focal adhesion, and cytoplasm) are captured to give a comprehensive picture of the internal and external mechanoregulatory environment. Specific emphasis is placed on the focal adhesion complex which acts as a central hub of mechanical signaling, regulating cell spreading, migration, proliferation, and differentiation. In addition, a wealth of available knowledge on mechanotransduction is curated to generate an integrated signaling network encompassing the central components of the focal adhesion, cytoplasm and nucleus that act in concert to promote durotaxis, proliferation, and differentiation in a stiffness-dependent manner.
- APA
- Andrew E Miller, Ping Hu, & Thomas H Barker (2020). Feeling Things Out: Bidirectional Signaling of the Cell–ECM Interface, Implications in the Mechanobiology of Cell Spreading, Migration, Proliferation, and Differentiation. https://fasciaresearchdatabase.com/feeling-things-out-bidirectional-signaling-of-the-cell-ecm-interface-implications-in-the-mechanobiology-of-cell-spreading-migration-proliferation-and-differentiation/
- MLA
- Andrew E Miller, et al. "Feeling Things Out: Bidirectional Signaling of the Cell–ECM Interface, Implications in the Mechanobiology of Cell Spreading, Migration, Proliferation, and Differentiation." 2020, https://fasciaresearchdatabase.com/feeling-things-out-bidirectional-signaling-of-the-cell-ecm-interface-implications-in-the-mechanobiology-of-cell-spreading-migration-proliferation-and-differentiation/.
- Chicago
- Andrew E Miller, Ping Hu, Thomas H Barker. 2020. "Feeling Things Out: Bidirectional Signaling of the Cell–ECM Interface, Implications in the Mechanobiology of Cell Spreading, Migration, Proliferation, and Differentiation.". https://fasciaresearchdatabase.com/feeling-things-out-bidirectional-signaling-of-the-cell-ecm-interface-implications-in-the-mechanobiology-of-cell-spreading-migration-proliferation-and-differentiation/
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