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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Structure, tensile properties and cytotoxicity assessment of sebacic acid based biodegradable polyesters with ricinoleic acid
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Structure, tensile properties and cytotoxicity assessment of sebacic acid based biodegradable polyesters with ricinoleic acid

机译:癸二酸基蓖麻油酸可生物降解聚酯的结构,拉伸性能和细胞毒性评估

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A new family of ricinoleic acid based polyesters was synthesized using catalyst free melt-condensation polymerization with sebacic acid, citric acid, mannitol and ricinoleic acid as precursors. The use of FT-IR and NMR characterisation techniques confirms the presence of ester linkages in the as-synthesized polymers. Depending on the precursor combination, their relative amount and the degree of curing, a broad range of elastic modulus (22-327 MPa) and tensile strength (0.7-12.7 MPa) can be obtained in the newly synthesized biopolymers. The polymers show rubbery behaviour at a physiological temperature (37 °C) and the contact angles of the synthesized polymers fall in the range of 42° to 71°, making them ideal substrates to study delivery of drugs through polymer scaffolds. The cytocompatibility assessment of the cured polymers confirmed good cell attachment and growth of smooth muscle cells (C2C12 myoblast cells). Importantly, oriented cell growth was observed after culturing myoblast cells for 3 days. The in vitro degradation in PBS indicates that the mild cured polymers follow a first order reaction kinetics and have degradation rate constants in the range of 0.009-0.038 h~(-1), depending on the relative proportions of monomers. Overall, the results of our study indicate that the physical properties can be tailored by varying the composition of the monomers and curing conditions in the newly developed polyesters. Hence, they may be used as potential substrates for tissue engineering scaffolds and for localized drug delivery.
机译:使用癸二酸,柠檬酸,甘露醇和蓖麻油酸作为前体,通过无催化剂的熔融缩聚反应合成了基于蓖麻油酸的新型聚酯。 FT-IR和NMR表征技术的使用证实了合成后的聚合物中存在酯键。取决于前体组合,它们的相对量和固化程度,在新合成的生物聚合物中可以获得宽范围的弹性模量(22-327 MPa)和拉伸强度(0.7-12.7 MPa)。该聚合物在生理温度(37°C)下表现出橡胶行为,并且合成的聚合物的接触角在42°至71°的范围内,使其成为研究药物通过聚合物支架递送的理想底物。固化聚合物的细胞相容性评估证实了良好的细胞附着和平滑肌细胞(C2C12成肌细胞)的生长。重要的是,在培养成肌细胞三天后观察到定向细胞生长。 PBS中的体外降解表明,轻度固化的聚合物遵循一级反应动力学,并且降解速率常数取决于单体的相对比例,范围为0.009-0.038 h〜(-1)。总体而言,我们的研究结果表明,可以通过改变新开发的聚酯中单体的组成和固化条件来调整物理性能。因此,它们可用作组织工程支架和局部药物递送的潜在底物。

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