期刊文献+

Effects of functionally graded materials on dynamics of molecular bond clusters 被引量:3

Effects of functionally graded materials on dynamics of molecular bond clusters
原文传递
导出
摘要 Unlike nonspecific adhesion of conventional hard materials in engineering commonly described by JKR and DMT type models,the molecular adhesion via specific receptor-ligand bonds is stochastic by nature and has the feature that its strength strongly depends on the medium stiffness surrounding the adhesion.In this paper,we demonstrate in a stochastic-elasticity framework that a type of materials with linearly graded elastic modulus can be designed to achieve "equal load sharing" and enhanced cooperative rebinding among interfacial molecular bonds.Upon modulus gradation,multiple molecular bonds can be elastically decoupled but statistically cooperative.In general,uniform molecular adhesion can be accomplished by two strategies:homogeneous materials with sufficient stiffness higher than a threshold or heterogeneous materials satisfying the criterion on modulus gradation.These results not only provide a theoretical principle for possible applications of functionally graded materials in quantitatively controlling cell-matrix adhesion,but also have general implications on adhesion between soft materials mediated by specific molecular binding. Unlike nonspecific adhesion of conventional hard materials in engineering commonly described by JKR and DMT type models,the molecular adhesion via specific receptor-ligand bonds is stochastic by nature and has the feature that its strength strongly depends on the medium stiffness surrounding the adhesion.In this paper,we demonstrate in a stochastic-elasticity framework that a type of materials with linearly graded elastic modulus can be designed to achieve "equal load sharing" and enhanced cooperative rebinding among interfacial molecular bonds.Upon modulus gradation,multiple molecular bonds can be elastically decoupled but statistically cooperative.In general,uniform molecular adhesion can be accomplished by two strategies:homogeneous materials with sufficient stiffness higher than a threshold or heterogeneous materials satisfying the criterion on modulus gradation.These results not only provide a theoretical principle for possible applications of functionally graded materials in quantitatively controlling cell-matrix adhesion,but also have general implications on adhesion between soft materials mediated by specific molecular binding.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第6期980-988,共9页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the Start-up Funding from Young Thousand-Talent Program of China the Fundamental Research Funds for Central Universities (Grant No. 2011XZZX002) the National Natural Science Foundation of China (Grant No. 11072273)
关键词 graded material adhesion molecular bond stiffness gradation 功能梯度材料 分子键 集群 随机弹性 非特异性 负载分担 材料类型 弹性模量
  • 相关文献

参考文献34

  • 1Bell G I. Models for specific adhesion of cells to cells. Science, 1978, 200:618-627.
  • 2Pelham R J, Wang Y L. Cell locomotion and focal adhesions are reg- ulated by substrate flexibility. Proc Nat Acad Sci United States Am,1997, 94:13661-13665.
  • 3Lo C M, Wang H B, Dembo M, et al. Cell movement is guided by the rigidity of the substrate. Biophys J, 2000, 79:144-152.
  • 4Engler A J, Sen S, Sweeney H L, et al. Matrix elasticity directs stem cell lineage specification. Cell, 2006, 126:677-689.
  • 5Johnson K L, Kendall K, Roberts A D. Surface energy and contact of elastic solids. Proc R Soc London Ser A, 1971, 324:301-313.
  • 6Derjaguin B V, Muller V M, Toporov Y P. Effect of contact defor- mations on adhesion of particles. J Colloid Interface Sci, 1975, 53: 314-326.
  • 7Shi X H, Zhao Y P. Comparison of various adhesion contact theories and the influence of dimensionless load parameter. J Adhes Sci Technol, 2004, 18:55-68.
  • 8Zhao Y P, Wang L S, Yu T X. Mechanics of adhesion in MEMS--a review. J Adhes S ci Technol, 2003, 17:519-546.
  • 9Leckband D, Israelachvili J. Intermolecular forces in biology. Q Rev Biophys, 2001, 34:105-267.
  • 10Evans E A, Calderwood D A. Forces and bond dynamics in cell ad- hesion. Science, 2007, 316:1148-1153.

同被引文献43

引证文献3

二级引证文献13

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部