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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Green synthesis of degradable conductive thermosensitive oligopyrrole/chitosan hydrogel intended for cartilage tissue engineering
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Green synthesis of degradable conductive thermosensitive oligopyrrole/chitosan hydrogel intended for cartilage tissue engineering

机译:用于软骨组织工程的可降解导电热敏寡酮/壳聚糖水凝胶的绿色合成

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摘要

Electroactive scaffolds containing conductive polymers can promote tissue repair and regeneration. However, these polymers are non-degradable and cannot be removed from body. To overcome this limitation of conductive polymers, we developed a novel injectable electroactive hydrogel containing pyrrole oligomers which possessed the unique properties of being both electrically conductive and biodegradable. First, pyrrole oligomers were synthesized via chemical polymerization and were found to be amorphous with a non-globular morphology. Then, three different compositions of injectable chitosanlbeta glycerophosphate hydrogels containing different concentrations of pyrrole oligomers were synthesized and characterized for chemical structure, morphology, conductivity, swelling ratio, In vitro biodegradation and gelation time. An increase in oligopyrrole content resulted in decreased pore size, and increased gelation time, swelling ratio, conductivity and degradation time. Among all the hydrogel compositions, the sample with pyrrole oligomer:chitosan ratio of 0.1 (w/w) showed the most prominent biodegradability, biocompatibility, electro-activity, swelling ratio and pore size values and was chosen as the optimal electroactive hydrogel composition in this work. (C) 2017 Elsevier B.V. All rights reserved.
机译:含有导电聚合物的电活性支架可以促进组织修复和再生。然而,这些聚合物是不可降解的,不能从体内除去。为了克服导电聚合物的这种限制,我们开发了一种新的含有吡咯低聚物的新型可注射的电活性水凝胶,其具有具有导电和可生物降解的独特性质。首先,通过化学聚合合成吡咯低聚物,发现具有非球状形态的无定形。然后,合成含有不同浓度的吡咯低聚物的三种不同组成的含有不同浓度的吡咯低聚物的水凝胶,并表征化学结构,形态,导电性,溶胀比,体外生物降解和凝胶化时间。寡粒含量的增加导致孔径降低,胶凝时间增加,溶胀比,导电性和降解时间增加。在所有水凝胶组合物中,用吡咯低聚物的样品:壳聚糖比例为0.1(w / w),显示出最突出的生物降解性,生物相容性,电活性,溶胀比和孔径值,并选择作为最佳的电活性水凝胶组合物工作。 (c)2017年Elsevier B.V.保留所有权利。

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