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Optimization of 3D-printed microstructures for investigating the properties of the mucus biobarrier

机译:用于研究粘液生物载波的特性的3D印刷微观结构优化

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摘要

In order to overcome the mucus biobarrier for drug delivery purposes, a better understanding of the interactions between mucus and the drug carrier is needed. We propose optical catapulting of 3D-printed microstructures with tailored shape and surface chemistry as a means to study the interaction filtering properties of a model mucus biobarrier in dynamic conditions. Using two-photon polymerization, we fabricate microstructures with a resolution of approximately 200 nm. We introduce amino functional groups on the surface of the IP-L 780-derived polymer in a single step process via UV-assisted functionalization with an anthraquinone amine photolinker. Our optical catapulting system relies on Generalized Phase Contrast for beam shaping and it allows us to manipulate microstructures over a distance of 250 μm, similar to the mucus layer thickness in the upper part of the lower human intestine. This work is part of an ongoing endeavor to establish Light Robotics as a valuable toolbox for biomedical research. Keywords: Optical catapulting, Two-photon polymerization, Surface modification, Generalized Phase Contrast, Light Robotics, Mucus biobarrier
机译:为了克服药物传递目的的粘液生物载波,需要更好地理解粘液和药物载体之间的相互作用。我们提出了3D印刷微观结构的光学弹射,具有定制的形状和表面化学作为研究在动态条件下模型粘液生物载体的相互作用过滤性能的方法。使用双光子聚合,我们制造具有约200nm的分辨率的微观结构。我们在单步过程中在IP-L 780衍生的聚合物表面上引入氨基官能团,通过用抗蒽醌胺光致光敏,在单一步骤方法中。我们的光学弹射系统依赖于光束成形的广义相位对比度,并且允许我们操纵在250μm的距离上的微观结构,类似于下部人肠的上部中的粘液层厚度。这项工作是持续努力将光机器人作为生物医学研究的有价值的工具箱建立光机器人的一部分。关键词:光学弹射,双光子聚合,表面改性,广义相对比,光机器人,粘液生物载波

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