Spontaneous assembly of viruses on multilayered polymer surfaces

  • Yoo, Pil J.
  • Nam, Ki Tae
  • Qi, Jifa
  • Lee, Soo-Kwan
  • Park, Juhyun
  • 외 2명
Citations

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305
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325

초록

The idea that randomly arranged supermolecular species incorporated in a network medium can ultimately create ordered structures at the surface may be counterintuitive. However, such order can be accommodated by regulating dynamic and equilibrium driving forces. Here, we present the ordering of M13 viruses, highly complex biomacromolecules, driven by competitive electrostatic binding, preferential macromolecular interactions and the rigid-rod nature of the virus systems during alternating electrostatic assembly. The steric constraints inherent to the competitive charge binding between M13 viruses and two oppositely charged weak polyelectrolytes leads to interdiffusion and the virtual 'floating' of viruses to the surface. The result is the spontaneous formation of a two-dimensional monolayer structure of viruses atop a cohesive polyelectrolyte multilayer. We demonstrate that this viral-assembled monolayer can be a biologically tunable scaffold to nucleate, grow and align nanoparticles or nanowires over multiple length scales. This system represents an interface that provides a general platform for the systematic incorporation and assembly of organic, biological and inorganic materials.

키워드

GENETICALLY-ENGINEERED VIRUSESEXPONENTIAL-GROWTHLIQUID-CRYSTALSINTERFACESSEPARATIONPARTICLESSPHERESARRAYSPHASEORDER
제목
Spontaneous assembly of viruses on multilayered polymer surfaces
저자
Yoo, Pil J.Nam, Ki TaeQi, JifaLee, Soo-KwanPark, JuhyunBelcher, Angela M.Hammond, Paula T.
DOI
10.1038/nmat1596
발행일
2006-03
유형
Article
저널명
Nature Materials
5
3
페이지
234 ~ 240