Escuela de Química, Instituto Tecnológico de Costa Rica, Apartado, 159-7050, Cartago, Costa Rica.
BioFarma Research Group, Centro Singular de Investigación en Medicina Molecular y Enfermedades Crónicas (CiMUS), Universidade de Santiago de Compostela, E-15782, Santiago de Compostela, Spain.
Carbohydr Polym. 2018 Jun 1;189:304-312. doi: 10.1016/j.carbpol.2018.02.040. Epub 2018 Feb 14.
Smart electroactive biomaterials are sought to allow the direct delivery of electrical, electrochemical and electromechanical signals to biological tissues. Specifically, poly-(3,4-ethylenedioxythiophene) (PEDOT) is a polymer of special interest attending to its biocompatibility, tuneable electrical conductivity and processing versatility. In this work, nanostructured PEDOT was synthesized using starch/κ-carrageenan aerogels as templates. κ-carrageenan biopolymer acted as doping agent of the conductive polymer to enhance the biocompatibility and the electrical response. The physicochemical, morphological, mechanical and electrical properties of the nanostructured PEDOT and templates were characterized. The incorporation of κ-carrageenan to the nanostructured materials resulted in an increase in the compressive strength of ca. 40% and a decrease in the electrical impedance of one order-of-magnitude. The synergistic combination of the inherent electrical properties of the PEDOT, the advantageous features of κ-carrageenan as doping agent and the porous morphology of the aerogel template resulted in electroactive PEDOT nanostructures with relevant properties for biomedical applications.
寻求智能电活性生物材料以允许将电、电化学和机电信号直接传递到生物组织。具体而言,聚(3,4-亚乙基二氧噻吩)(PEDOT)是一种特别感兴趣的聚合物,因为其具有生物相容性、可调的电导率和多种加工方式。在这项工作中,使用淀粉/κ-卡拉胶气凝胶作为模板合成了纳米结构化的 PEDOT。κ-卡拉胶生物聚合物作为导电聚合物的掺杂剂,提高了生物相容性和电响应。纳米结构化 PEDOT 和模板的物理化学、形态、机械和电气性能进行了表征。κ-卡拉胶的加入使纳米结构化材料的抗压强度增加了约 40%,电导率降低了一个数量级。PEDOT 的固有电性能、κ-卡拉胶作为掺杂剂的有利特性以及气凝胶模板的多孔形态的协同组合,导致了具有生物医学应用相关性能的电活性 PEDOT 纳米结构。