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Programing stimuli-responsiveness of gelatin with electron beams: basic effects and development of a hydration-controlled biocompatible demonstrator

机译:用电子束对明胶的刺激反应性进行编程:水合可控生物相容性演示剂的基本作用和发展

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摘要

Biomimetic materials with programmable stimuli responsiveness constitute a highly attractive material class for building bioactuators, sensors and active control elements in future biomedical applications. With this background, we demonstrate how energetic electron beams can be utilized to construct tailored stimuli responsive actuators for biomedical applications. Composed of collagen-derived gelatin, they reveal a mechanical response to hydration and changes in pH-value and ion concentration, while maintaining their excellent biocompatibility and biodegradability. While this is explicitly demonstrated by systematic characterizing an electron-beam synthesized gelatin-based actuator of cantilever geometry, the underlying materials processes are also discussed, based on the fundamental physical and chemical principles. When applied within classical electron beam lithography systems, these findings pave the way for a novel class of highly versatile integrated bioactuators from micro- to macroscales.
机译:具有可编程刺激响应性的仿生材料构成了在将来的生物医学应用中构建生物致动器,传感器和主动控制元件的极具吸引力的材料类别。在此背景下,我们演示了如何利用高能电子束为生物医学应用构建量身定制的刺激响应式执行器。它们由胶原蛋白衍生的明胶组成,显示出对水合的机械响应以及pH值和离子浓度的变化,同时保持了出色的生物相容性和生物降解性。尽管通过系统地表征电子束合成的基于明胶的悬臂几何致动器已明确证明了这一点,但还根据基本的物理和化学原理讨论了基础的材料工艺。当在经典电子束光刻系统中使用时,这些发现为从微​​型到大型的新型一类高度通用的集成生物致动器铺平了道路。

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