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Enzymes as Biodevelopers for Nano- And Micropatterned Bicomponent Biopolymer Thin Films

机译:纳米和微图案双组分生物聚合物薄膜的生物显影剂酶

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The creation of nano- and micropatterned polymer films is a crucial step for innumerous applications in science and technology. However, there are several problems associated with environmental aspects concerning the polymer synthesis itself, cross-linkers to induce the patterns as well as toxic solvents used for the preparation and even more important development of the films (e.g., chlorobenzene). In this paper, we present a facile method to produce micro- and nanopatterned biopolymer thin films using enzymes as so-called biodevelopers. Instead of synthetic polymers, naturally derived ones are employed, namely, poly-3-hydroxybutyrate and a cellulose derivative, which are dissolved in a common solvent in different ratios and subjected to spin coating. Consequently, the two biopolymers undergo microphase separation and different domain sizes are formed depending on the ratio of the biopolymers. The development step proceeds via addition of the appropriate enzyme (either PHB-depolymerase or cellulase), whereas one of the two biopolymers is selectively degraded, while the other one remains on the surface. In order to highlight the enzymatic development of the films, video AFM studies have been performed in real time to image the development process in situ as well as surface plasmon resonance spectroscopy to determine the kinetics. These studies may pave the way for the use of enzymes in patterning processes, particularly for materials intended to be used in a physiological environment.
机译:纳米和微米图案的聚合物薄膜的创建对于科学和技术中的众多应用而言是至关重要的一步。但是,与环境方面有关的一些问题涉及聚合物合成本身,用于引发图案的交联剂以及用于制备膜甚至更重要的显影的有毒溶剂(例如氯苯)。在本文中,我们提出了一种简便的方法,利用酶作为所谓的生物显影剂来生产微米和纳米图案的生物聚合物薄膜。代替合成聚合物,使用天然衍生的聚合物,即聚-3-羟基丁酸酯和纤维素衍生物,它们以不同的比例溶解在普通溶剂中并进行旋涂。因此,两种生物聚合物经历微相分离并且根据生物聚合物的比例形成不同的畴尺寸。显影步骤通过添加适当的酶(PHB解聚酶或纤维素酶)进行,而两种生物聚合物中的一种被选择性降解,而另一种保留在表面上。为了突出胶片的酶促显影,已经实时进行了视频AFM研究,以对显影过程进行原位成像,并通过表面等离振子共振光谱法确定动力学。这些研究可能为酶在构图过程中的使用铺平道路,特别是对于打算在生理环境中使用的材料。

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