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Optimisation of conductive polymer biomaterials for cardiac progenitor cells

机译:心祖细胞导电聚合物生物材料的优化

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The characterisation of biomaterials for cardiac tissue engineering applications is vital for the development of effective treatments for the repair of cardiac function. New ‘smart’ materials developed from conductive polymers can provide dynamic benefits in supporting and stimulating stem cells via controlled surface properties, electrical and electromechanical stimulation. In this study we investigate the control of surface properties of conductive polymers through a systematic approach to variable synthesis parameters, and how the resulting surface properties influence the viability of cardiac progenitor cells. A thorough analysis investigating the effect of electropolymerisation parameters, such as current density and growth, and reagent variation on physical properties provides a fundamental understanding of how to optimise conductive polymer biomaterials for cardiac progenitor cells.
机译:心脏组织工程应用的生物材料的表征对于开发用于修复心脏功能的有效治疗至关重要。从导电聚合物开发的新的“智能”材料可以通过受控表面性能,电气和机电刺激提供动态益处。在该研究中,我们通过系统方法来研究导电聚合物的表面性质,以及所得表面性质如何影响心血管祖细胞的活力。彻底的分析研究了电机参数,例如电流密度和生长,以及物理性质的试剂变化提供了对如何优化心脏祖细胞的导电聚合物生物材料的基本理解。

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