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Silk Cryogels for Microfluidics

机译:用于微流体的silk Cryogels

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摘要

Silk fibroin from silkworm cocoons is found in numerous applications ranging from textiles to medical implants. Its recent adoption as a biomaterial is due to the materialu27s strength, biocompatibility, self-assembling behavior, programmable degradability, optical clarity, and its ability to be functionalized with antibodies and proteins. In the field of bioengineering it has been utilized as a tissue scaffolding, drug delivery system, biosensor, and implantable electrode. This work suggests a new application for porous silk in a microscale chromatography column. We demonstrate in situ cryotropic polymerization of highly porous structures in microscale geometries by freezing aqueous silk with a solvent. The resulting cryogels are experimentally characterized using flow parameters common in chromatography design; tortuosity, global pressure drop, pore diameter, and porosity. These empirical parameters are put into porous flow models to calculate an order-of-magnitude increase in functional surface area over the blank capillaries and packed-sphere columns used in traditional designs. Additionally, the pressure requirements to produce relevant flow rates in these structures are found not to threaten the integrity of microfluidic seals or connectors.
机译:蚕茧中的丝素蛋白在从纺织品到医疗植入物的众多应用中被发现。它最近被用作生物材料的原因是该材料的强度,生物相容性,自组装行为,可编程的可降解性,光学清晰度以及其可以被抗体和蛋白质功能化的能力。在生物工程领域,它已被用作组织支架,药物输送系统,生物传感器和可植入电极。这项工作表明多孔丝在微型色谱柱中的新应用。我们通过用溶剂冷冻含水丝证明了在微观尺度上高度多孔结构的原位低温聚合。使用色谱设计中常用的流量参数对生成的冰凝胶进行实验表征。曲折度,整体压降,孔径和孔隙率。将这些经验参数放入多孔流模型中,以计算传统设计中使用的空白毛细管和填充球柱上的功能表面积的数量级增加。另外,发现在这些结构中产生相关流速的压力要求不会威胁微流体密封件或连接器的完整性。

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