Stability of adhesion clusters under constant force

We solve the stochastic equations for a cluster of parallel bonds with shared constant loading, rebinding, and the completely dissociated state as an absorbing boundary. In the small force regime, cluster lifetime grows only logarithmically with bond number for weak rebinding, but exponentially for...

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Published inPhysical review letters Vol. 92; no. 10; p. 108102
Main Authors Erdmann, T, Schwarz, U S
Format Journal Article
LanguageEnglish
Published United States 12.03.2004
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Abstract We solve the stochastic equations for a cluster of parallel bonds with shared constant loading, rebinding, and the completely dissociated state as an absorbing boundary. In the small force regime, cluster lifetime grows only logarithmically with bond number for weak rebinding, but exponentially for strong rebinding. Therefore rebinding is essential to ensure physiological lifetimes. The number of bonds decays exponentially with time for most cases, but in the intermediate force regime a small increase in loading can lead to much faster decay. This effect might be used by cell-matrix adhesions to induce signaling events through cytoskeletal loading.
AbstractList We solve the stochastic equations for a cluster of parallel bonds with shared constant loading, rebinding, and the completely dissociated state as an absorbing boundary. In the small force regime, cluster lifetime grows only logarithmically with bond number for weak rebinding, but exponentially for strong rebinding. Therefore rebinding is essential to ensure physiological lifetimes. The number of bonds decays exponentially with time for most cases, but in the intermediate force regime a small increase in loading can lead to much faster decay. This effect might be used by cell-matrix adhesions to induce signaling events through cytoskeletal loading.
Author Schwarz, U S
Erdmann, T
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/15089248$$D View this record in MEDLINE/PubMed
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Snippet We solve the stochastic equations for a cluster of parallel bonds with shared constant loading, rebinding, and the completely dissociated state as an absorbing...
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StartPage 108102
SubjectTerms Cell Adhesion - physiology
Cytoskeleton - metabolism
Extracellular Matrix - physiology
Models, Biological
Stochastic Processes
Thermodynamics
Title Stability of adhesion clusters under constant force
URI https://www.ncbi.nlm.nih.gov/pubmed/15089248
Volume 92
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