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Probing transmembrane mechanical coupling and cytomechanics using magnetic twisting cytometryWe recently developed a magnetic twisting cytometry technique that allows us to apply controlled mechanical stresses to specific cell surface receptors using ligand-coated ferromagnetic microbeads and to simultaneously measure the mechanical response in living cells. Using this technique, we have previously shown the following: (i) beta 1 integrin receptors mediate mechanical force transfer across the cell surface and to the cytoskeleton, whereas other transmembrane receptors (e.g., scavenger receptors) do not; (ii) cytoskeletal stiffness increases in direct proportion to the level of stress applied to integrins; and (iii) the slope of this linear stiffening response differs depending on the shape of the cell. We now show that different integrins (beta 1, alpha V beta 3, alpha V, alpha 5, alpha 2) and other transmembrane receptors (scavenger receptor, platelet endothelial cell adhesion molecule) differ in their ability to mediate force transfer across the cell surface. In addition, the linear stiffening behavior previously observed in endothelial cells was found to be shared by other cell types. Finally, we demonstrate that dynamic changes in cell shape that occur during both cell spreading and retraction are accompanied by coordinate changes in cytoskeletal stiffness. Taken together, these results suggest that the magnetic twisting cytometry technique may be a powerful and versatile tool for studies analyzing the molecular basis of transmembrane mechanical coupling to the cytoskeleton as well as dynamic relations between changes in cytoskeletal structure and alterations in cell form and function.
Document ID
20050000171
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Wang, N.
(Harvard School of Public Health Boston, MA 02115, United States)
Ingber, D. E.
Date Acquired
August 22, 2013
Publication Date
July 1, 1995
Publication Information
Publication: Biochemistry and cell biology = Biochimie et biologie cellulaire
Volume: 73
Issue: 8-Jul
ISSN: 0829-8211
Subject Category
Life Sciences (General)
Funding Number(s)
CONTRACT_GRANT: HL-33009
CONTRACT_GRANT: CA-45548
Distribution Limits
Public
Copyright
Other
Keywords
NASA Discipline Number 40-20
Non-NASA Center
NASA Discipline Cell Biology
NASA Program Space Biology

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