Liana Ayu Ekajayanthi, Chia Ed Win, Marquis Christopher P, Gunawan Cindy, Gooding J Justin, Amal Rose
School of Chemical Engineering, The University of New South Wales, Sydney, NSW 2052, Australia.
School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, NSW 2052, Australia.
J Colloid Interface Sci. 2016 Apr 15;468:192-199. doi: 10.1016/j.jcis.2016.01.052. Epub 2016 Jan 25.
The work investigates the influence of surface physicochemical properties of planar indium tin oxide (ITO) as a model substrate on T4 bacteriophage adsorption. A comparative T4 bacteriophage adsorption study shows a significant difference in bacteriophage adsorption observed on chemically modified planar ITO when compared to similarly modified particulate ITO, which infers that trends observed in virus-particle interaction studies are not necessarily transferrable to predict virus-planar surface adsorption behaviour. We also found that ITO surfaces modified with methyl groups, (resulting in increased surface roughness and hydrophobicity) remained capable of adsorbing T4 bacteriophage. The adsorption of T4 onto bare, amine and carboxylic functionalised planar ITO suggests the presence of a unique binding behaviour involving specific functional groups on planar ITO surface beyond the non-specific electrostatic interactions that dominate phage to particle interactions. The paper demonstrates the significance of physicochemical properties of surfaces on bacteriophage-surface interactions.
该研究探讨了作为模型底物的平面铟锡氧化物(ITO)的表面物理化学性质对T4噬菌体吸附的影响。一项比较T4噬菌体吸附的研究表明,与类似修饰的颗粒状ITO相比,在化学修饰的平面ITO上观察到的噬菌体吸附存在显著差异,这意味着在病毒-颗粒相互作用研究中观察到的趋势不一定能用于预测病毒-平面表面的吸附行为。我们还发现,用甲基修饰的ITO表面(导致表面粗糙度和疏水性增加)仍然能够吸附T4噬菌体。T4在裸露的、胺基和羧基功能化的平面ITO上的吸附表明,除了主导噬菌体与颗粒相互作用的非特异性静电相互作用之外,平面ITO表面上特定官能团还存在独特的结合行为。本文证明了表面物理化学性质对噬菌体-表面相互作用的重要性。