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Toward hybrid proteo-polymeric vesicles generating a photoinduced proton gradient for biofuel cells

机译:朝着混合蛋白-聚合物囊泡产生生物燃料电池的光致质子梯度

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摘要

We describe our efforts towards constructing a hybrid protein-polymer vesicle device based on the photoactive protein, bacteriorhodopsin (BR), for applications in the area of biosensors and biofuel cells. Successful protein incorporation into biomimetic polymer vesicles is a prerequisite for developing hybrid 'nano-bio' integrated devices. We suggest a systematic procedure for creating energy transducing, protein-incorporating, functional vesicles, based on the morphological ternary diagram. First, we constructed the morphological ternary diagram of the water/ethanol/polymer system with a size distribution of vesicles. The polymer used was an ABA triblock copolymer, PEtOz-PDMS-PEtOz [poly(2-ethyl-2-oxazoline)-&-poly(dimethylsiloxane)-b-poly(2-ethyl-2-oxazoline)]. Second, we incorporated BR in the form of purple membrane (PM) into polymer vesicle membranes under several different conditions, based on the morphological ternary diagram. Generation of electrochemical energy by BR proton pumping was checked by monitoring the pH change in parallel with transmission electron microscope analysis. The morphology of the polymer vesicles changed very little with the addition of PM. This work shows that the morphological ternary diagram provides a systematic method for constructing successful hybrid BR-incorporating biomimetic polymer vesicles.
机译:我们描述了我们的努力,以构建基于光敏蛋白细菌视紫红质(BR)的混合蛋白-聚合物囊泡装置,用于生物传感器和生物燃料电池领域。成功将蛋白质并入仿生聚合物囊泡中是开发杂交“纳米生物”集成设备的先决条件。我们建议基于形态三元图创建能量转换,蛋白质结合,功能囊泡的系统程序。首先,我们构建了具有小泡大小分布的水/乙醇/聚合物系统的形态三元图。所使用的聚合物是ABA三嵌段共聚物,PEtOz-PDMS-PEtOz [聚(2-乙基-2-恶唑啉)-&-聚(二甲基硅氧烷)-b-聚(2-乙基-2-恶唑啉)]。其次,基于形态三元图,我们在几种不同条件下将紫色膜(PM)形式的BR掺入了聚合物囊泡膜中。通过与透射电子显微镜分析同时监测pH值的变化来检查通过BR质子泵产生的电化学能的产生。添加PM后,聚合物囊泡的形态变化很小。这项工作表明形态三元图提供了一种系统的方法,用于构建成功的掺入BR的仿生聚合物囊泡。

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