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Cell-inspired electroactive polymer materials incorporating biomolecular materials

机译:结合生物分子材料的细胞启发性电活性聚合物材料

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In this paper, we discuss a new form of electroactive material that consists of both synthetic polymers and biological molecules. This modular material system is inspired by the compartmentalized and hierarchical organization of cellular systems and features an artificial cell membrane, or lipid bilayer, which acts as the primary transduction element in the material. Building on recent developments by our group, the lipid bilayer is formed at the interface between phospholipid-encased hydrogel volumes surrounded by oil and contained in a solid substrate. Results are presented that demonstrate how the electromechanical properties of the lipid bilayer can be used for both static and dynamic sensing and actuation. Specifically, a relative change in length of the outer substrate of 10- 15% due to an applied force yields large changes in capacitance (> 90% reduction) or resistance (20 - 30% increase) depending on the composition of the bilayer. The capacitivc nature of the membrane is also used in a dynamic sensing application, whereby the perturbation of an artificial hair structure induces bending in a bilayer formed at the base of the hair. This oscillation results in a time-varying membrane capacitance that in turn produces an electrical current on the order of 1 -100pA. The ability to actuate the amount of contact between neighboring modules is also discussed and a concept for fabricating higher-order biomolecular arrays that connect internally to form networks of lipid bilayers is also presented.
机译:在本文中,我们讨论了一种由合成聚合物和生物分子组成的新型电活性材料。这种模块化的材料系统受到细胞系统的分隔和分层组织的启发,并具有人造细胞膜或脂质双层,其充当材料中的主要转导元素。基于我们小组的最新发展,脂质双层形成在被油包围并包含在固体基质中的磷脂包裹的水凝胶体积之间的界面上。结果表明,脂质双层的机电性能如何可用于静态和动态感测和驱动。具体地,取决于双层的组成,由于施加的力导致的外基板的长度的相对变化为10-15%,导致电容(减小> 90%)或电阻(增大20-30%)产生大的变化。膜的电容性质也用于动态感测应用中,由此,人造毛发结构的扰动会引起在毛发根部形成的双层中的弯曲。这种振荡导致膜电容随时间变化,进而产生大约1 -100pA的电流。还讨论了致动相邻模块之间接触量的能力,并且还提出了用于制造内部连接以形成脂质双层网络的高级生物分子阵列的概念。

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