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通过表面化学修饰实现棒状胶体 fd 病毒的电荷反转。

Charge reversal of the rodlike colloidal fd virus through surface chemical modification.

机构信息

IFF-Soft Condensed Matter, Research Center Jülich, Germany.

出版信息

Langmuir. 2010 Jul 6;26(13):10593-9. doi: 10.1021/la100740e.

Abstract

There is increasing interest in the use of viruses as model systems for fundamental research and as templates for nanomaterials. In this work, the rodlike fd virus was subjected to chemical modifications targeting different solvent-exposed functional groups in order to tune its surface properties, especially reversing the surface charge from negative to positive. The carboxyl groups of fd were coupled with different kinds of organic amines by carbodiimide chemistry, resulting in modified viruses that are positively charged over a wide range of pH. Care was taken to minimize intervirus cross linking, which often occurs because of such modifications. The surface amino groups were also grafted with poly(ethylene glycol) (PEG) end-functionalized with an active succinimidyl ester in order to introduce a steric stabilization effect. By combining charge reversal with PEG grafting, a reversible attraction between positively and negatively charged PEG-grafted fd viruses could be realized, which was tuned by the ionic strength of the solution. In addition, a charge-reversed fd virus forms only a pure nematic phase in contrast to the cholesteric phase of the wild type. These modified viruses might be used as model systems in soft condensed matter physics, for example, in the study of polyelectrolyte complexes or lyotropic liquid-crystalline phase behavior.

摘要

人们越来越关注将病毒用作基础研究的模型系统和纳米材料的模板。在这项工作中,棒状 fd 病毒经历了化学修饰,针对不同暴露在溶剂中的官能团进行修饰,以调整其表面特性,特别是将表面电荷从负变为正。fd 的羧基通过碳二亚胺化学与不同种类的有机胺偶联,得到在较宽 pH 范围内带正电荷的修饰病毒。修饰过程中应尽量减少病毒间的交联,因为这种修饰往往会导致交联。表面氨基也用末端带有活性琥珀酰亚胺酯的聚乙二醇(PEG)接枝,以引入空间稳定效应。通过反转电荷和 PEG 接枝的结合,可以实现正电荷和带负电荷的 PEG 接枝 fd 病毒之间的可逆吸引力,该吸引力可以通过溶液的离子强度进行调节。此外,与野生型 fd 病毒形成的胆甾相相比,电荷反转的 fd 病毒仅形成纯向列相。这些修饰的病毒可以用作软凝聚态物理的模型系统,例如在研究聚电解质复合物或溶致液晶相行为时。

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