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Cryogel-Based Electronic-Tissue Interfaces with Soft, Highly Compressible, and Tunable Mechanics

机译:Cryogel-Based Electronic-Tissue接口与柔软的、高度可压缩和可调力学

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摘要

Electrically conductive materials with soft, tough, and tunable mechanics have utility in a wide range of applications including neuroprosthetics. Such materials can serve as interfaces between electrical components and tissues, providing mechanical matches with and better conformations to soft, irregularly shaped surfaces. Hydrogels can potentially provide these attributes while remaining hydrated for long periods of time-providing a long-term and stable electronic-tissue interface. Additionally, in applications that demand implantation, hydrogels can be formulated to locally deliver enhancing therapeutics. Here, hydrogels are developed by entrapping a conducting polymer within a crosslinked poly(acrylic acid) (pAAc) network. Critically, these hydrogels are cast under freezing conditions which produces cryogels that exhibit macroporous, soft, and highly tunable mechanics (0.2-20 kPa, by varying pAAc and crosslinker concentrations). Additionally, these cryogels are tough enough to survive over 90% compression, which enables survival after being passed through 16-gauge needles. Cryogels also exhibit electrical conductivities that are sufficient to record alpha waves from the scalp of human subjects. Growth of fibroblasts cultures in the presence of these cryogels produce statistically similar viabilities compared to controls and do not disrupt fibroblast cell cycles. Finally, cryogels are capable of being loaded with and delivering proteins that can potentially combat inflammation.
机译:导电材料柔软,艰苦的,和可调机制效用包括广泛的应用程序neuroprosthetics。电器元件之间的接口组织,提供机械和匹配更好的构象柔软,形状不规则表面。长期属性,同时保持水分提供一个长期稳定的时期electronic-tissue接口。应用程序需求注入,水凝胶可以制定本地交付增强疗法。诱骗导电聚合物中交联聚(丙烯酸)(pAAc)网络。至关重要的是,这些水凝胶投下冻结条件产生cryogels表现出大孔、柔软和高度可调力学(0.2 -20 kPa,通过改变pAAc和交联剂浓度)。cryogels足够艰难生存超过90%压缩,使生存之后通过16-gauge针。表现出电的导率从头皮足以记录α波人类的主题。在这些cryogels产生的存在统计异常而相似控制和不破坏纤维母细胞的细胞周期。装载和交付的蛋白质潜在的抗炎作用。

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