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Towards a Biocompatible Biodegradable Copolymer Incorporating Electroactive Oligothiophene Units

机译:迈向具有电活性寡聚噻吩单元的生物相容性可生物降解的共聚物

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摘要

As part of an ongoing effort to develop biocompatible, biodegradable conducting polymers, we report here the synthesis and characterization of a novel copolymer, 5,5"'bishydroxymethyl-3,3"'-dimethyl-2,2':5',2":5",2"'-quaterthiophene-co-adipic acid polyester (QAPE). This system was designed so as to incorporate alternating electroactive quaterthiophene units and biodegradable ester units into one macromolecular framework, while allowing for facile preparation of the polymer via a polycondensation reaction. In agreement with the design expectations, the ester groups were found to be incorporated into the polymer between the quaterthiophene subunits, as inferred from standard chemical and spectroscopic analyses. QAPE exhibited redox activity as detected by cyclic voltammetry and a new red-shifted absorption peak upon doping, providing support for the notion that the quaterthiophene units maintain electroactivity after incorporation into the QAPE polymer framework. The degradation, likely through surface erosion, of this polymer in the presence of cholesterol esterase was confirmed by the detection of a fluorescence signal at wavelengths corresponding to the quaterthiophene subunit and comparisons to appropriate controls. In vitro cytocompatability studies, carried out over 48 h, indicate that the QAPE polymer is nontoxic to Schwann cells.
机译:作为开发生物相容性,可生物降解的导电聚合物的一项不懈努力的一部分,我们在此报告了新型共聚物5,5“'双羟甲基-3,3”'-二甲基-2,2':5',2的合成和表征设计“:5”,2“'-四噻吩-共己二酸聚酯(QAPE)。该系统设计为将交替的电活性四噻吩单元和可生物降解的酯单元合并到一个大分子框架中,同时允许通过由标准化学和光谱分析得出,QAPE表现出氧化还原活性,这与设计预期相符,根据标准化学和光谱分析推断,该酯基被掺入到四噻吩亚单位之间的聚合物中。掺杂后移动了吸收峰,支持了将四噻吩单元并入QAPE聚合物骨架后仍保持电活性的观点。通过表面侵蚀,在胆固醇酯酶存在下,通过检测在与四噻吩亚单位相应的波长处的荧光信号并与适当的对照进行比较,证实了该聚合物在胆固醇酯酶的存在下。在48小时内进行的体外细胞相容性研究表明,QAPE聚合物对雪旺氏细胞无毒。

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