Dimensional and mechanical dynamics of active and stable edges in motile fibroblasts investigated by using atomic force microscopy
- 2 February 1999
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 96 (3), 921-926
- https://doi.org/10.1073/pnas.96.3.921
Abstract
The atomic force microscope (AFM) was employed to investigate the extension and retraction dynamics of protruding and stable edges of motile 3T3 fibroblasts in culture. Such dynamics closely paralleled the results of earlier studies employing video microscopy that indicated that the AFM force-mapping technique does not appreciably perturb these dynamics. Force scans permitted height determinations of active and stable edges. Whereas the profiles of active edges are flat with average heights of 0.4–0.8 μm, stable edges smoothly ascend to 2–3 μm within about 6 μm of the edge. In the region of the leading edge, the height fluctuates up to 50% (SD) of the mean value, much more than the stable edge; this fluctuation presumably reflects differences in underlying cytoskeletal activity. In addition, force mapping yields an estimate of the local Young’s modulus or modulus of elasticity (E, the cortical stiffness). This stiffness will be related to “cortical tension,” can be accurately calculated for the stable edges, and is ≈12 kPa in this case. The thinness of the leading edge precludes accurate estimation of the E values, but within 4 μm of the margin it is considerably smaller than that for stable edges, which have an upper limit of 3–5 kPa. Although blebbing cannot absolutely be ruled out as a mechanism of extension, the data are consistent with an actin polymerization and/or myosin motor mechanism in which the average material properties of the extending margin would be nearly constant to the edge. Because the leading edge is softer than the stable edge, these data also are consistent with the notion that extension preferentially occurs in regions of lower cortical tension.Keywords
This publication has 48 references indexed in Scilit:
- Suppression of bleb formation, locomotion, and polarity of walker carcinosarcoma cells by hypertonic media correlates with cell volume reduction but not with changes in the F-actin contentCell Motility, 1997
- Actin-Based Cell Motility and Cell LocomotionCell, 1996
- Cell Migration: A Physically Integrated Molecular ProcessCell, 1996
- Protrusive activity quantitatively determines the rate and direction of cell locomotionCell Motility, 1996
- Integrin-cytoskeletal interactions in migrating fibroblasts are dynamic, asymmetric, and regulated.The Journal of cell biology, 1993
- Life at the Leading Edge: The Formation of Cell ProtrusionsAnnual Review of Cell and Developmental Biology, 1993
- Cortical Flow in Animal CellsScience, 1988
- The locomotion of fibroblasts in culture I. Movements of the leading edgeExperimental Cell Research, 1970
- The relation between load and penetration in the axisymmetric boussinesq problem for a punch of arbitrary profileInternational Journal of Engineering Science, 1965
- Ueber die Berührung fester elastischer Körper.Journal für die reine und angewandte Mathematik (Crelles Journal), 1882