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Preparation of poly(glycerol sebacate) fibers for tissue engineering applications

机译:用于组织工程应用的聚(甘油癸二酸盐)纤维的制备

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Poly(glycerol sebacate) (PGS) was discovered in the previous decade and is a promising bioelastomer with tuneable mechanical, biodegradable and biocompatible properties. Despite of these superiorities, PGS possesses solubility and processability disadvantages. To overcome these drawbacks of PGS, blends could be formed with a polymer which is soluble in a common solvent with PGS prepolymer, having a melting temperature above the crosslinking temperature and which can be removed from the structure after crosslinking. In this study, PGS fibers were fabricated for the first time using pressurized gyration as scaffolds. Fibers were obtained through blending the synthesized PGS prepolymer with poly(vinyl alcohol) (PVA) to overcome solubility/melting drawbacks of crosslinked PGS polymer. Obtained fiber diameters have a narrow size distribution which did not change after thermal crosslinking. After the washing procedure, similar to 25% decrease in the average fiber diameter was observed due to the PVA removal. Resulting PGS fibers were characterized in terms of chemical structure, morphology, and cell viability. Fibroblast cell adhesion and spreading on three-dimensional fiber networks were determined by microscopy. PGS fibers supported cell adhesion and proliferation. After 7 days of cell-PGS fiber interactions, cell proliferation and spreading increased without any toxicity.
机译:在前十年中发现了聚(甘油癸二酸盐)(PGS),是具​​有可调可调的机械,可生物降解和生物相容性的生物弹性体。尽管有这些优势,PGS具有溶解性和可加工性的缺点。为了克服PGS的这些缺点,可以用聚合物形成混合物,该聚合物可溶于具有PGS预聚物的普通溶剂,其具有高于交联温度的熔化温度,并且可以在交联后从结构中除去。在该研究中,使用加压血管作为支架,首次制造PGS纤维。通过将合成的PGS预聚物与聚(乙烯醇)(PVA)混合来获得纤维,以克服交联的PGS聚合物的溶解度/熔化缺点。获得的纤维直径具有窄尺寸的分布,在热交联后不会改变。在洗涤过程之后,由于PVA除去,观察到平均纤维直径的25%降低。所得到的PGS纤维的特征在化学结构,形态和细胞活力方面。通过显微镜测定成纤维细胞粘附和在三维光纤网络上扩展。 PGS纤维负载细胞粘附和增殖。在细胞-PGS纤维相互作用7天后,细胞增殖和展开没有任何毒性。

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