首页> 外文会议>Conference on nanobiosystems: Processing, characterization, and applications VI >Protein 'Smart' Micro/nano-biooptics via Femtosecond Laser Direct Writing
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Protein 'Smart' Micro/nano-biooptics via Femtosecond Laser Direct Writing

机译:通过飞秒激光直接写入的蛋白质'智能'微/纳米生物光学

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Protein-hydrogel-based free-form three-dimensional (3D) micro/nano-elements with "smart" stimuli-responsiveness fabricated via femtosecond laser direct writing (FsLDW) have attracted increasing efforts for their wide utilities in many fields, such as bio-micro/nano-machine, biophotonics, etc. All processes of this protein-FsLDW are carried out in proteins' aqueous solutions, as a result of which the approach is noncontact, maskless and biocompatible. So, we applied the promising FsLDW approach, which, in the construction of protein-based 3D optical microdevices, for example, microlenses. In order to meet the requirements of optical applications, FsLDW system and processing parameters were carefully optimized to achieve high-quality surface and 3D morphology. The photo-crosslinked protein microhydrogels showed a rapid and reversible swell-to-shrink behavior once stimulated by chemical signals, by which the protein microdevices can be dynamically tuned. Because of using protein molecules as "building blocks", protein-based microelements were demonstrated of good biocompatibility. Based on the valuable and unique merits, protein-based optical micro/nano-elements have great potential for micro/nano-bio-optics, bionics, and novel biomedical applications, etc.
机译:基于蛋白质 - 水凝胶的自由形式的三维(3D)微/纳米元素,通过飞秒激光直接写入(FSLDW)制造的“智能”刺激性,在许多领域(如Bio)中吸引了越来越多的努力-Micro /纳米机,生物化学等。该蛋白质-FSLDW的所有方法都在蛋白质水溶液中进行,结果是这种方法是非接触的,无掩模和生物相容性的。因此,我们应用了有前途的FSLDW方法,该方法在基于蛋白质的3D光学微生物的构建中,例如微透镜。为了满足光学应用的要求,仔细优化FSLDW系统和处理参数,以实现高质量的表面和3D形态。一旦通过化学信号刺激,光交联的蛋白质microHogels展示了一种快速和可逆的膨胀到收缩行为,通过化学信号刺激,可以动态调谐蛋白质微生物。由于使用蛋白质分子作为“构建块”,蛋白质的微量元素被证明了良好的生物相容性。基于有价值和独特的优点,基于蛋白质的光学微/纳米元件具有很大的微/纳米生物光学,仿生学和新型生物医学应用的潜力。

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