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Mechanical properties of double-stranded DNA biofilm with Gaussian distribution 被引量:1

Mechanical properties of double-stranded DNA biofilm with Gaussian distribution
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摘要 In microcantilever-based label-free biodetection technologies, deflection changes induced by adsorptions of double-stranded DNA (dsDNA) molecules on Au-layer surface are greatly affected by the mechanical, thermal and electrical properties of DNA biofilm. In this paper, the elastic properties of dsDNA biofilm are studied. First, the Parsegian's empirical potential based on a mesoscopic liq- uid crystal theory is employed to describe the interaction energy among coarse-grained DNA cylinders. Then, con- sidering a Gaussian distribution of DNA interaxial distance, the thought experiment method is used to derive an analyti- cal expression for Young's modulus of DNA biofilm with a stochastic packing pattern for the first time. Results show that Young's modulus of DNA biofilm is on the order of 10 MPa. These findings could provide a simple and effective method to evaluate the mechanical properties of soft biofilm on snbstrate. In microcantilever-based label-free biodetection technologies, deflection changes induced by adsorptions of double-stranded DNA (dsDNA) molecules on Au-layer surface are greatly affected by the mechanical, thermal and electrical properties of DNA biofilm. In this paper, the elastic properties of dsDNA biofilm are studied. First, the Parsegian's empirical potential based on a mesoscopic liq- uid crystal theory is employed to describe the interaction energy among coarse-grained DNA cylinders. Then, con- sidering a Gaussian distribution of DNA interaxial distance, the thought experiment method is used to derive an analyti- cal expression for Young's modulus of DNA biofilm with a stochastic packing pattern for the first time. Results show that Young's modulus of DNA biofilm is on the order of 10 MPa. These findings could provide a simple and effective method to evaluate the mechanical properties of soft biofilm on snbstrate.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第1期15-19,共5页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China(11272193 and 10872121) the Shanghai Leading Academic Discipline Project(S30106)
关键词 Double-stranded DNA. BiofilmElastic modu-lus - Cylinder model Gaussian distribution Double-stranded DNA. BiofilmElastic modu-lus - Cylinder model Gaussian distribution
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  • 1陈少华,刘磊,王自强.NANOINDENTATION OF THIN-FILM-SUBSTRATE SYSTEM DETERMINATION OF FILM HARDNESS AND YOUNG'S MODULUS[J].Acta Mechanica Sinica,2004,20(4):383-392. 被引量:2
  • 2Jian Lin Liu Xi Qiao Feng Shou Wen Yu.Morphology of liquid drops and thin films on a solid surface with sinusoidal microstructures[J].Acta Mechanica Sinica,2006,22(4):315-322. 被引量:6
  • 3Wendong Shi,Xi Qiao Feng,Huajian Gao.Two-dimensional model of vesicle adhesion on curved substrates[J].Acta Mechanica Sinica,2006,22(6):529-535. 被引量:6
  • 4Chiti, F., Dobson, C.M.: Protein misfolding, functional amyloid, and human disease. Annu. Rev. Biochem. 75, 333-366 (2006).
  • 5Braak, H., Braak, E.: Cognitive impairment in parkinsons-disease- amyloid plaques, neurofibrillary tangles, and neuropil threads in the cerebral-cortex. J. Neural Transmission Parkinsons Dis. Dement. Sect. 2(1), 45-57 (1990).
  • 6Goldschmidt, L., Teng, E, Riek, R., et al.: The amylome, all proteins capable of forming amyloid-like fibrils. Proc. Natl. Acad. Sci. USA 107(8), 3487-3492 (2010).
  • 7Knowles, T.P., Fitzpatrick, A.W., Meehan, S., et al.: Role of inter- molecular forces in defining properties of protein nanofibrils. Science 318(5858), 1900-1902 (2007).
  • 8Smith, J.F., Knowles, T.P., Dobson, C.M., et al.: Characterization of the nanoscale properties of individual amyloid fibrils. Proc. Natl. Acad. Sci. USA 43(103), 15806-15811 (2006).
  • 9Paparcone, R., Keten, S., Buehler, M.J.: Atomistic simulation of nanomechanical properties of Alzbeimer's Aft (1-40) amy-loid fibrils under compressive and tensile loading. J. Biomech. 43(6), 1196-1201 (2010).
  • 10Alberts, B., Johnson, A., Lewis, J., et al.: Molecular Biology of the Cell. Garland Science, New York (1994).

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