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光触发病毒样组装体的货物释放。

Phototriggered cargo release from virus-like assemblies.

出版信息

Faraday Discuss. 2013;166:47-57. doi: 10.1039/c3fd00088e.

Abstract

There has been tremendous progress towards the development of responsive polymers that are programmed to respond to an external stimulus such as light, pH and temperature. The unique combination of molecular packaging followed by slow, controlled release of molecular cargo is of particular importance for self-healing materials and the controlled release of drugs. While much focus and progress remains centred around synthetic carriers, viruses and virus-like particles can be considered ideal cargo carriers as they are intrinsically designed to package, protect and deliver nucleic acid cargo to host cells. Here, we report the encapsulation of a stimuli-responsive self-immolative polymer within virus-like assemblies of Cowpea Chlorotic Mottle Virus. Upon photo-irradiation, the self-immolative polymer undergoes a head-to-tail depolymerization into its monomeric subunits, resulting in the slow release of the molecular cargo. We propose that the liberated monomers are small enough to diffuse through the pores of the virus capsid shell and offer an alternative strategy for the controlled loading and unloading of the molecular cargo using viruses as cargo carriers.

摘要

在开发对外部刺激(如光、pH 值和温度)做出响应的响应性聚合物方面已经取得了巨大进展。分子包装的独特组合,随后是分子货物的缓慢、受控释放,对于自修复材料和药物的控制释放尤为重要。虽然人们仍然非常关注和专注于合成载体,但病毒和类病毒颗粒可以被认为是理想的货物载体,因为它们本质上被设计用于将核酸货物包装、保护并递送到宿主细胞。在这里,我们报告了将响应性自耗聚合物封装在豇豆花叶病毒样组装体中。光照射后,自耗聚合物发生头尾解聚成其单体亚基,导致分子货物的缓慢释放。我们提出,释放的单体足够小,可以通过病毒衣壳壳的孔扩散,并为使用病毒作为货物载体进行分子货物的控制加载和卸载提供了一种替代策略。

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