Stability of heterogeneous parallel-bond adhesion clusters under load

A. K. Dasanna, G. Gompper, D. Fedosov
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引用次数: 3

Abstract

Adhesion interactions mediated by multiple bond types are relevant for many biological and soft matter systems, including the adhesion of biological cells and functionalized colloidal particles to various substrates. To elucidate advantages and disadvantages of multiple bond populations for the stability of heterogeneous adhesion clusters of receptor-ligand pairs, a theoretical model for a homogeneous parallel adhesion bond cluster under constant loading is extended to several bond types. The stability of the entire cluster can be tuned by changing densities of different bond populations as well as their extensional rigidity and binding properties. In particular, bond extensional rigidities determine the distribution of total load to be shared between different sub-populations. Under a gradual increase of the total load, the rupture of a heterogeneous adhesion cluster can be thought of as a multistep discrete process, in which one of the bond sub-populations ruptures first, followed by similar rupture steps of other sub-populations or by immediate detachment of the remaining cluster. This rupture behavior is qualitatively independent of involved bond types, such as slip and catch bonds. Interestingly, an optimal stability is generally achieved when the total cluster load is shared such that loads on distinct bond populations are equal to their individual critical rupture forces. We also show that cluster heterogeneity can drastically affect cluster lifetime.
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负载作用下异质平行键黏附团簇的稳定性
多种键类型介导的粘附相互作用与许多生物和软物质系统有关,包括生物细胞和功能化胶体颗粒对各种底物的粘附。为了阐明多种键族对受体-配体异质粘附团簇稳定性的优缺点,将恒定载荷下均匀平行粘附键簇的理论模型扩展到几种键类型。整个团簇的稳定性可以通过改变不同键族的密度以及它们的拉伸刚度和结合性能来调节。特别是,键的拉伸刚度决定了总载荷在不同子种群之间的分布。在总载荷逐渐增加的情况下,异质粘附簇的破裂可以被认为是一个多步骤的离散过程,其中一个键亚种群首先破裂,然后是其他亚种群的类似破裂步骤或剩余簇的立即脱离。这种断裂行为在性质上与所涉及的粘结类型无关,例如滑移粘结和捕获粘结。有趣的是,当总簇载荷是共享的,使得不同键种群的载荷等于它们各自的临界断裂力时,通常会达到最佳稳定性。我们还表明,集群异质性会极大地影响集群的生命周期。
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