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Fabrication of Biomaterials via Controlled Protein Bubble Generation and Manipulation

机译:通过受控的蛋白质气泡产生和操纵来制造生物材料

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In this work, we utilize a recently developed microbubbling process to generate controlled protein (bovine serum albumin, BSA) coated bubbles and then manipulate these to fabricate a variety of structures suitable for several generic biomedical applications, tissue engineering, and biosensor coatings. Using BSA solutions with varying concentrations (20, 25, and 30 wt %) and cross-linking (terephthaloyl chloride) mechanisms, structures were fabricated including porous thin films with variable pore sizes and thickness (partially cross-linked coupled to bubble breakdown), scaffolds with variable pore morphologies (fully cross-linked), and coated bubbles (no cross-linking), which can be used as stand-alone delivery devices and contrast agents. The movement of. typical biosensor chemicals (catechol and hydrogen peroxide) across appropriate film structures was studied. The potential of formed scaffold structures for tissue engineering applications was demonstrated using mouse cell lines (L929). In addition to low cost, providing uniform structure generation and high output, the size of the bubbles can easily be controlled by adjusting simplistic processing parameters. The combination of robust processing and chemical modification to uniform macromolecule bubbles can be utilized as a competing, yet novel, tool with current: technologies and processes in advancing the biomaterials and biomedical engineering remits.
机译:在这项工作中,我们利用最近开发的微泡工艺来产生受控蛋白(牛血清白蛋白,BSA)包被的气泡,然后操纵它们以制造适用于几种通用生物医学应用,组织工程和生物传感器涂层的各种结构。使用具有不同浓度(20、25和30 wt%)的BSA溶液和交联(对苯二甲酰氯)机理,制备了结构,包括具有可变孔径和厚度的多孔薄膜(部分交联与气泡破裂),具有可变孔形态(完全交联)和涂层气泡(无交联)的支架,可以用作独立的输送装置和造影剂。运动。研究了跨适当膜结构的典型生物传感器化学品(邻苯二酚和过氧化氢)。使用小鼠细胞系(L929)证明了形成的支架结构在组织工程应用中的潜力。除了低成本,提供均匀的结构生成和高产量外,还可以通过调整简单的加工参数轻松控制气泡的大小。稳健的处理和化学修饰相结合以形成均匀的大分子气泡的方法可作为一种具有竞争性但又新颖的工具,与当前的技术和工艺相结合,以促进生物材料和生物医学工程技术的发展。

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