The role of filopodia in the recognition of nanotopographies
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Open Access
- 15 April 2013
- journal article
- research article
- Published by Springer Nature in Scientific Reports
- Vol. 3 (1), srep01658
- https://doi.org/10.1038/srep01658
Abstract
Substrate-exploring functions of filopodia were previously suggested based on cell studies on flat surfaces, but their role in topography sensing especially within nanofibrillar environments remained elusive. Here we have grown highly flexible hairy silicon nanowires on micropatterned islands on otherwise flat glass surfaces and coated them both with the extracellular matrix (ECM) protein fibronectin. This allowed us to visualize how filopodia steer fundamental cell functions such as cell adhesion, spreading, migration and division in the absence of lamellipodia. Shortly after seeding, transient filopodia protrude from the still spherical cells. Once filopodia contact nanowires, they bend and align them, while most filopodia peel off from flat surfaces. A zipping mechanism regulated by traction forces is proposed to explain how force-induced changes in filopodia-substrate contact angles enable topography sensing, including the still elusive phenomenon of contact guidance. Filopodia thus play a central role in steering transient topographic preferences.Keywords
This publication has 64 references indexed in Scilit:
- External forces control mitotic spindle positioningNature Cell Biology, 2011
- Stretchy Proteins on Stretchy Substrates: The Important Elements of Integrin-Mediated Rigidity SensingDevelopmental Cell, 2010
- A novel mode of cell detachment from fibrillar fibronectin matrix under shearJournal of Cell Science, 2009
- Time-lapse observation of cell alignment on nanogrooved patternsJournal of The Royal Society Interface, 2009
- Optimization strategies for electrospun silk fibroin tissue engineering scaffoldsBiomaterials, 2009
- Functional atlas of the integrin adhesomeNature Cell Biology, 2007
- The Universal Dynamics of Cell SpreadingCurrent Biology, 2007
- Initiation of Attachment and Generation of Mature Focal Adhesions by Integrin-containing Filopodia in Cell SpreadingMolecular Biology of the Cell, 2006
- Myosin-X is a molecular motor that functions in filopodia formationProceedings of the National Academy of Sciences, 2006
- Navigational errors made by growth cones without filopodia in the embryonic xenopus brainNeuron, 1993