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具有工程化离子选择性渗透性的聚合物囊泡作为具有保留结构的响应性纳米隔室。

Polymersomes with engineered ion selective permeability as stimuli-responsive nanocompartments with preserved architecture.

机构信息

Department of Chemistry, University of Basel, Klingelbergstrasse 80, CH-4056 Basel, Switzerland.

Department of Chemistry, University of Basel, Klingelbergstrasse 80, CH-4056 Basel, Switzerland.

出版信息

Biomaterials. 2015;53:406-14. doi: 10.1016/j.biomaterials.2015.02.080. Epub 2015 Mar 18.

Abstract

Following a biomimetic approach, we present here polymer vesicles (polymersomes) with ion selective permeability, achieved by inserting gramicidin (gA) biopores in their membrane. Encapsulation of pH-, Na(+)- and K(+)- sensitive dyes inside the polymersome cavity was used to assess the proper insertion and functionality of gA inside the synthetic membrane. A combination of light scattering, transmission electron microscopy, and fluorescence correlation spectroscopy was used to show that neither the size, nor the morphology of the polymersomes was affected by successful insertion of gA in the polymer membrane. Interestingly, proper insertion and functionality of gA were demonstrated for membranes with thicknesses in the range 9.2-12.1 nm, which are significantly greater than membrane lipid counterparts. Both polymersomes with sizes around 100 nm and giant unilamellar vesicles (GUVs) with inserted gA exhibited efficient time response to pH- and ions and therefore are ideal candidates for designing nanoreactors or biosensors for a variety of applications in which changes in the environment, such as variations of ionic concentration or pH, are required.

摘要

我们采用仿生方法,通过在聚合物膜中插入短杆菌肽(gA)生物孔,成功制备了具有离子选择性渗透性的聚合物囊泡(聚合物囊泡)。将 pH 值、Na(+)-和 K(+)-敏感染料包封在聚合物囊泡腔中,用于评估 gA 在合成膜中的适当插入和功能。我们使用光散射、透射电子显微镜和荧光相关光谱的组合来表明,gA 在聚合物膜中的成功插入既不会影响聚合物囊泡的大小,也不会影响其形态。有趣的是,对于厚度在 9.2-12.1nm 范围内的膜,gA 的适当插入和功能得到了证明,这明显大于膜脂质对应物的厚度。大小约为 100nm 的聚合物囊泡和插入 gA 的巨大单层囊泡(GUV)都对 pH 值和离子表现出高效的时间响应,因此非常适合设计纳米反应器或生物传感器,用于各种需要环境变化(例如离子浓度或 pH 值的变化)的应用。

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