Kollmetz Tarek, Monteiro A Isabela, Gerrard Juliet A, Malmström Jenny
Department of Chemical and Materials Engineering, The University of Auckland, Auckland 1010, New Zealand.
The MacDiarmid Institute for Advanced Materials and Nanotechnology, Wellington 6140, New Zealand.
ACS Omega. 2020 Oct 8;5(41):26365-26373. doi: 10.1021/acsomega.0c02392. eCollection 2020 Oct 20.
The co-assembly of peptides and proteins in poly(styrene--ethylene oxide) (PS--PEO) thin films has proven to be a promising method to fabricate polymer-biomolecule functional materials. Contrary to the covalent immobilization of biomolecules on surfaces, co-assembly presents the opportunity to arrange cargo within thin films, which can be released upon exposure to an aqueous environment. The use of a mixed solvent system ensures the solubilization of hydrophobic polymer as well as the solubilization and protection of the biomolecule cargo. However, to produce largely defect-free films of PS--PEO from a solvent mixture containing water is challenging due to the narrow range of solvent miscibility and polymer/protein solubility. This work explores the limits of using a benzene/methanol/water solvent mixture for the production of thin PS--PEO films and provides a template for the fabrication optimization of block copolymer thin films in different complex solvent systems. The film quality is analyzed using optical microscopy and atomic force microscopy and correlated to the solvent composition. By adjusting the solvent composition to 80/18.8/1.2 vol % benzene/methanol/water, it was possible to reliably fabricate thin films with less than 1% macroscopic defect surface coverage. Using the optimized solvent composition, we also demonstrate the fabrication of ordered PS--PEO films containing lysozyme. Furthermore, we show the release of lysozyme into aqueous media, which highlights the potential use of such films for drug delivery applications.
肽和蛋白质在聚(苯乙烯-环氧乙烷)(PS-PEO)薄膜中的共组装已被证明是制备聚合物-生物分子功能材料的一种很有前景的方法。与生物分子在表面的共价固定不同,共组装提供了在薄膜中排列货物的机会,这些货物在暴露于水环境时可以释放出来。使用混合溶剂系统可确保疏水性聚合物的溶解以及生物分子货物的溶解和保护。然而,由于溶剂混溶性和聚合物/蛋白质溶解度的范围狭窄,从含有水的溶剂混合物中制备基本上无缺陷的PS-PEO薄膜具有挑战性。这项工作探索了使用苯/甲醇/水溶剂混合物生产PS-PEO薄膜的极限,并为在不同复杂溶剂系统中制备嵌段共聚物薄膜的优化提供了模板。使用光学显微镜和原子力显微镜分析薄膜质量,并将其与溶剂组成相关联。通过将溶剂组成调整为80/18.8/1.2体积%的苯/甲醇/水,可以可靠地制备宏观缺陷表面覆盖率小于1%的薄膜。使用优化的溶剂组成,我们还展示了含有溶菌酶的有序PS-PEO薄膜的制备。此外,我们展示了溶菌酶释放到水性介质中,这突出了此类薄膜在药物递送应用中的潜在用途。