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首页> 外文期刊>Chemistry: A European journal >Hollow Polymer Shells from Biological Templates: Fabrication and Potential Appications
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Hollow Polymer Shells from Biological Templates: Fabrication and Potential Appications

机译:生物模板的空心聚合物壳:制造和潜在应用

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摘要

Three-dimensional ultrathin polymer shells have been produced by a combination of step-by-step adsorption of polyelectrlytes on glutaraldehyde-treated human erythrocytes and subsequent solubilization of the cytoplasmatic constituents by means of a deproteinizing agent. The obtained hollow films preserve both the size and shape of the templating cells. This opens a pathway for the fabrication of polymeric capsules within a wide range of size and shape by using various biological templates. They may have exciting potential applications, such as templates for nanocomposites, as containers for a large class of materials, or as cages for chemical reactions. The thickness of the films can be adjusted over a large range: from a few nm up to several tens of nm. The polymer shells are permeable to small molecules and ions but not to macromolecules. An increase in the ionic strength of the solution up to 100 mmol make the capsules permeable for proteins. Permeability and conductivity studies have provided evidence that the adsorption of lipids on polyelectrolyte layers is a means of producing capsules with controlled permeability properties. 6-Carboxyfluorescein and Rhodamin 6G were precipitated within the capsules.
机译:通过将聚电解质逐步吸附在戊二醛处理过的人红细胞上,然后通过脱蛋白剂溶解细胞质成分,从而生产出了三维超薄聚合物外壳。所获得的中空膜保留了模板单元的尺寸和形状。通过使用各种生物模板,这为制造各种尺寸和形状的聚合物胶囊开辟了道路。它们可能具有令人兴奋的潜在应用,例如用于纳米复合材料的模板,用于大量材料的容器或用于化学反应的笼子。薄膜的厚度可以在大范围内调节:从几纳米到几十纳米。聚合物壳可渗透小分子和离子,但不能渗透大分子。溶液的离子强度增加到100 mmol,可使胶囊对蛋白质具有渗透性。渗透性和电导率研究提供了证据,表明脂质在聚电解质层上的吸附是生产具有可控渗透性的胶囊的一种手段。 6-羧基荧光素和若丹明6G在胶囊中沉淀。

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