首页> 外文期刊>Journal of Biomechanics >Mechanical properties of double-stranded DNA biolayers immobilized on microcantilever under axial compression.
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Mechanical properties of double-stranded DNA biolayers immobilized on microcantilever under axial compression.

机译:在轴向压缩下固定在微悬臂梁上的双链DNA生物层的机械性能。

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摘要

In label-free biodetections based on microcantilever technology, double-stranded DNA (dsDNA) structures form through the linkage between probe single-stranded DNA (ssDNA) molecules immobilized on solid substrates and target ssDNA molecules in solutions. Mechanical/electrical properties of these biolayers are important factors for nanomechanical deflections of microcantilevers. In this paper, the biolayer immobilized on microcantilever is treated as a bar with a macroscopic elastic modulus on the basis of continuum mechanics viewpoints. In consideration of hydration force, screened electrostatic repulsion and conformational fluctuation in biolayers, load-deformation curves of dsDNA biolayers under axial compression are depicted with the help of the energy conservation law and a mesoscopic free energy presented by Strey et al. (1997, 1999) [Strey, H.H., Parsegian, V.A., Podgornik, R., 1997. Equation of state for DNA liquid crystals: fluctuation enhanced electrostatic double layer repulsion. Physical Review Letters 78, 895-898; Strey, H.H., Parsegian, V.A., Podgornik, R., 1999. Equation of state for polymer liquid crystals: theory and experiment. Physical Review E 59, 999-1008] from a liquid crystal theory. And the analytical relation between macroscopic Young's modulus of biolayers and nanoscopic geometrical properties of dsDNA, packing density, buffer salt solution concentration, etc. is also formulated.
机译:在基于微悬臂梁技术的无标记生物检测中,双链DNA(dsDNA)结构通过固定在固体基质上的探针单链DNA(ssDNA)分子与溶液中的目标ssDNA分子之间的连接而形成。这些生物层的机械/电性能是微悬臂梁的纳米机械偏转的重要因素。本文从连续力学的观点出发,将固定在微悬臂梁上的生物层视为具有宏观弹性模量的棒。考虑到水合力,在生物层中筛选的静电排斥和构象波动,借助能量守恒定律和Strey等人提出的介观自由能,描绘了dsDNA生物层在轴向压缩下的载荷-变形曲线。 (1997,1999)[Strey,H.H.,Parsegian,V.A.,Podgornik,R.,1997。DNA液晶的状态方程:波动增强了静电双层排斥。物理评论快报78,895-898; Strey,H.H.,Parsegian,V.A.,Podgornik,R.,1999。聚合物液晶的状态方程:理论和实验。 [E 59,999-1008 [Physical Review E 59,999-1008]。并建立了生物层的宏观杨氏模量与dsDNA的纳米几何特性,堆积密度,缓冲盐溶液浓度等之间的解析关系。

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