Department of Mechanics, College of Sciences, Shanghai University, Shanghai 200444, China.
Biomaterials. 2010 Sep;31(25):6659-66. doi: 10.1016/j.biomaterials.2010.05.028. Epub 2010 Jun 11.
Biomolecule adsorption is a fundamental process in the design of biosensors. Mechanical/electrical/thermal properties of biofilms have great influences on biodetection signals. The double-stranded DNA (dsDNA) biofilm adhered on microcantilever is treated as a bending beam with a macroscopic elastic modulus in the viewpoint of continuum mechanics. Accounting for hydration force, electrostatic repulsion and conformational entropy, moment-angle diagrams of dsDNA biofilm in pure bending state are depicted with the help of the energy conservation law and a mesoscopic liquid crystal theory presented by Strey et al. An analytical model is provided to predict macroscopic elastic modulus of dsDNA biofilm as a function of nanoscopic properties of dsDNA, packing density, buffer salt concentration and etc. The parameters for microcantilever-DNA system are obtained by curve fitting with Stachowiak's experimental data based on a modified Stoney's formula. Elastic modulus grows exponentially with the enhancement of packaging density, but diminishes with the increase of buffer salt concentration, and its order is about 1 approximately 10 MPa. Conformational entropy is one of predominant factors considered in near-surface system whether in high or low salt consternation.
生物分子吸附是生物传感器设计的基础过程。生物膜的机械/电气/热性能对生物检测信号有很大影响。从连续介质力学的角度来看,附着在微悬臂梁上的双链 DNA(dsDNA)生物膜被视为弯曲梁,具有宏观弹性模量。考虑到水合力、静电排斥和构象熵,利用能量守恒定律和 Strey 等人提出的介观液晶理论,绘制了纯弯曲状态下 dsDNA 生物膜的力矩-角度图。提供了一个分析模型,可预测 dsDNA 生物膜的宏观弹性模量作为 dsDNA 的微观特性、包装密度、缓冲盐浓度等的函数。通过基于修正的 Stoney 公式对 Stachowiak 的实验数据进行曲线拟合,获得了微悬臂梁-DNA 系统的参数。弹性模量随包装密度的增加呈指数增长,但随缓冲盐浓度的增加而减小,其阶数约为 1 约 10 MPa。构象熵是近表面系统中考虑的主要因素之一,无论是在高盐还是低盐环境中。