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The capillarity of nanometric water menisci confined inside closed-geometry viral cages

机译:纳米水半月板的毛细作用限制在封闭几何形状的病毒笼内

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摘要

We present an investigation of water menisci confined in closed geometries by studying the structural effects of their capillary forces on viruses during the final stage of desiccation. We used individual particles of the bacteriophage ϕ29 and the minute virus of mice. In both cases the genomic DNA was ejected from the capsid. However, although the structural integrity of the minute virus of mice was essentially preserved, the ϕ29 capsid underwent a wall-to-wall collapse. We provide evidence that the capillary forces of water confined inside the viruses are mainly responsible for these effects. Moreover, by performing theoretical simulations with a lattice gas model, we found that some structural differences between these 2 viruses may be crucial to explain the different ways in which they are affected by water menisci forces confined at the nanoscale.
机译:我们通过研究干燥过程最后阶段毛细作用力对病毒的结构影响,来研究封闭在封闭几何形状中的水弯液面。我们使用了29噬菌体和小鼠微小病毒的单个颗粒。在两种情况下,基因组DNA都从衣壳中弹出。然而,尽管基本上保留了小鼠微小病毒的结构完整性,但ϕ29衣壳却发生了逐壁塌陷。我们提供的证据表明,局限于病毒内部的水的毛细作用主要是这些作用的原因。此外,通过使用晶格气体模型进行理论模拟,我们发现这两种病毒之间的某些结构差异对于解释它们受纳米级水弯液面力影响的不同方式可能至关重要。

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