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  4. Effect of Ca2+ ions on the adhesion and mechanical properties of adsorbed layers of human osteopontin
 
research article

Effect of Ca2+ ions on the adhesion and mechanical properties of adsorbed layers of human osteopontin

Zappone, B.
•
Thurner, P. J.
•
Adams, J.  
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2008
Biophysical Journal

Using an atomic force microscope and a surface force apparatus, we measured the surface coverage, adhesion, and mechanical properties of layers of osteopontin (OPN), a phosphoprotein of the human bones, adsorbed on mica. OPN is believed to connect mineralized collagen fibrils of the bone in a matrix that dissipates energy, reducing the risk of fractures. Atomic force microscopy normal force measurements showed large adhesion and energy dissipation upon retraction of the tip, which were due to the breaking of the many OPN-OPN and OPN-mica bonds formed during tip-sample contact. The dissipated energy increased in the presence of Ca2+ ions due to the formation of additional OPN-OPN and OPN-mica salt bridges between negative charges. The forces measured by surface force apparatus between two macroscopic mica surfaces were mainly repulsive and became hysteretic only in the presence of Ca2+: adsorbed layers underwent an irreversible compaction during compression due to the formation of long-lived calcium salt bridges. This provides an energy storage mechanism, which is complementary to energy dissipation and may be equally relevant to bone recovery after yield. The prevalence of one mechanism or the other appears to depend on the confinement geometry, adsorption protocol, and loading-unloading rates.

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Type
research article
DOI
10.1529/biophysj.108.135889
Web of Science ID

WOS:000258826900030

Author(s)
Zappone, B.
•
Thurner, P. J.
•
Adams, J.  
•
Fantner, G. E.  
•
Hansma, P. K.
Date Issued

2008

Published in
Biophysical Journal
Volume

95

Issue

6

Start page

2939

End page

2950

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LBNI  
Available on Infoscience
November 5, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/56729
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