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F特异性RNA噬菌体的聚集和表面性质:对膜过滤过程的影响。

Aggregation and surface properties of F-specific RNA phages: implication for membrane filtration processes.

作者信息

Langlet Jérémie, Gaboriaud Fabien, Duval Jérôme F L, Gantzer Christophe

机构信息

Laboratory of Physical Chemistry and Microbiology for the Environment, Nancy University, CNRS, Faculty of Pharmacy, 5 rue Albert Lebrun, 54000 Nancy, France.

出版信息

Water Res. 2008 May;42(10-11):2769-77. doi: 10.1016/j.watres.2008.02.007. Epub 2008 Feb 17.

Abstract

We report an experimental investigation of the electrokinetic properties and size variations of four F-specific bacteriophages of the types MS2, GA, Qbeta and SP (21-30 nm in diameter) over a broad range of pH values (1.5-7.5) and NaNO3 electrolyte concentrations (1-100 mM). The results obtained by dynamic light scattering show that the aggregation of SP and GA particles takes place over the whole range of pH and ionic strength conditions examined. For MS2 phages, the aggregation of MS2 particles is not observed for pH higher than the isoelectric point (pI) and large ionic strengths for which interparticular repulsive electrostatic interactions are however expected to be sufficiently screened. Aggregation of the MS2 phages, dispersed in 1 and 100 mM electrolyte concentration, occurs at pH 4, which basically corresponds to the pI as determined by electrophoresis measurements. The Qbeta particles suspended in solutions of low electrolyte concentrations aggregate at low pH values (pI approximately 3) and, unlike MS2, at large ionic strengths over the whole range of pH conditions considered in this study. These elements allow the determination of the hydrophobic sequence for the four phages SP approximately GA>Qbeta>MS2. Close inspection of the electrokinetic results reveals small to significant variations of the pI values-depending on the phage considered-with respect to the concentration of indifferent NaNO3 electrolyte. This indicates that features other than chemical and electrostatic in nature play a key role in determining the pI and more generally the electrophoretic mobility mu of viral particles. A qualitative interpretation is given and is based on the consideration of inner electro-osmotic flow within the isolated or aggregated particles. The impact of the flow properties within the particles is further in agreement with recent theoretical formalism developed for the electrokinetics of soft multiplayer particles, the phages analyzed here being some illustrative examples. The determination and qualitative interpretation of the surface properties of the viral particles as reported in the current study are commented within the context of water treatment especially concerning viral removal by membrane filtration processes.

摘要

我们报告了一项关于MS2、GA、Qβ和SP型四种F特异性噬菌体(直径21 - 30 nm)在广泛的pH值范围(1.5 - 7.5)和硝酸钠电解质浓度(1 - 100 mM)下的电动性质和尺寸变化的实验研究。动态光散射获得的结果表明,在所研究的整个pH和离子强度条件范围内,SP和GA颗粒发生聚集。对于MS2噬菌体,当pH高于等电点(pI)且离子强度较大时(然而预计颗粒间的排斥静电相互作用会得到充分屏蔽),未观察到MS2颗粒的聚集。分散在1 mM和100 mM电解质浓度中的MS2噬菌体在pH 4时发生聚集,这基本上对应于通过电泳测量确定的pI。悬浮在低电解质浓度溶液中的Qβ颗粒在低pH值(pI约为3)时聚集,并且与MS2不同,在本研究考虑的整个pH条件范围内的高离子强度下也会聚集。这些因素使得能够确定四种噬菌体的疏水序列为SP>GA>Qβ>MS2。对电动结果的仔细检查揭示了pI值存在小到显著的变化——取决于所考虑的噬菌体——相对于惰性硝酸钠电解质浓度。这表明除了化学和静电性质之外的其他特征在确定pI以及更普遍地确定病毒颗粒的电泳迁移率μ方面起着关键作用。基于对分离或聚集颗粒内的内部电渗流的考虑给出了定性解释。颗粒内流动性质的影响进一步与最近为软多层颗粒的电动学发展的理论形式一致,这里分析的噬菌体就是一些示例。本研究中报道的病毒颗粒表面性质的确定和定性解释在水处理的背景下进行了讨论,特别是关于通过膜过滤过程去除病毒。

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