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首页> 外文期刊>Macromolecules >Photoinitiated Polymerization-Induced Self-Assembly in the Presence of Surfactants Enables Membrane Protein Incorporation into Vesicles
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Photoinitiated Polymerization-Induced Self-Assembly in the Presence of Surfactants Enables Membrane Protein Incorporation into Vesicles

机译:在表面活性剂存在下,光灭绝的聚合诱导的自组装使膜蛋白能够掺入囊泡中

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Photoinitiated polymerization-induced self-assembly (photo-PISA) is an efficient approach to predictably prepare polymeric nanostructures with a wide range of morphologies. Given that this process can be performed at high concentrations and under mild reaction conditions, it has the potential to have significant industrial scope. However, given that the majority of industrial (and more specifically biotechnological) formulations contain mixtures of polymers and surfactants, the effect of such surfactants on the PISA process is an important consideration. Thus, to expand the scope of the methodology, the effect of small molecule surfactants on the PISA process, specifically for the preparation of unilamellar vesicles, was investigated. Similar to aqueous photo-PISA findings in the absence of surfactant molecules, the originally targeted vesicular morphology was retained in the presence of varying concentrations of non-ionic surfactants, while a diverse set of lower-order morphologies was observed for ionic surfactants. Interestingly, a critical micelle concentration (CMC)-dependent behavior was detected in the case of zwitterionic detergents. Additionally, tunable size and membrane thickness of vesicles were observed by using different types and concentration of surfactants. Based on these findings, a functional channel-forming membrane protein (OmpF porin), stabilized in aqueous media by surfactant molecules, was able to be directly inserted into the membrane of vesicles during photo-PISA. Our study demonstrates the potential of photo-PISA for the direct formation of protein–polymer complexes and highlights how this method could be used to design biomimicking polymer/surfactant nanoreactors.
机译:光灭绝的聚合诱导的自组装(Photo-PISA)是一种有效的方法,可预见到具有各种形态的聚合物纳米结构。鉴于该过程可以在高浓度下进行,并且在温和的反应条件下,它具有具有显着的工业范围的可能性。然而,鉴于大多数工业(更具体地说的生物技术)制剂含有聚合物和表面活性剂的混合物,这种表面活性剂对PISA过程的影响是重要的考虑因素。因此,为了扩大方法的范围,研究了小分子表面活性剂对PISA工艺的影响,具体用于制备单硅烷囊泡。类似于在没有表面活性剂分子的情况下的含水光学比萨发现,最初靶向的凹形形态被保留在不同浓度的非离子表面活性剂的存在下,而离子表面活性剂观察到不同的低阶形态。有趣的是,在两性离子洗涤剂的情况下检测到临界胶束浓度(CMC)依赖性行为。另外,通过使用不同类型和表面活性剂浓度观察囊泡的可调谐尺寸和膜厚度。基于这些发现,通过表面活性剂分子在水性介质中稳定在水性介质中的功能性通道形成膜蛋白(OMPF孔孔)能够在光比萨期间直接插入囊泡的膜中。我们的研究证明了光纤比萨的直接形成蛋白质聚合物复合物,并突出该方法如何用于设计生物剥夺聚合物/表面活性剂纳米反应器。

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