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Two-Photon-Induced Microstereolithography of Chitosan-g-Oligolactides as a Function of Their Stereochemical Composition

机译:壳聚糖-g-低聚丙交酯的双光子诱导微立体光刻技术及其立体化学组成的函数

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摘要

Chitosan-g-oligolactide copolymers with relatively long oligolactide grafted chains of various stereochemical compositions have been synthetized via a solvent-free mechanochemical technique and tailored to fabricate three-dimensional hydrogels using two-photon induced microstereolithography. An effect of the characteristics of chitosan and oligolactide used for the synthesis on the grafting yield and copolymer’s behavior were evaluated using fractional analysis, FTIR-spectroscopy, dynamic light scattering, and UV-spectrophotometry. The lowest copolymer yield was found for the system based on chitosan with higher molecular weight, while the samples consisting of low-molecular weight chitosan showed higher grafting degrees, which were comparable in both the cases of l,l- or l,d-oligolactide grafting. The copolymer processability in the course of two-photon stereolithography was evaluated as a function of the copolymer’s characteristics and stereolithography conditions. The structure and mechanical properties of the model film samples and fabricated 3D hydrogels were studied using optical and scanning electron microscopy, as well as by using tensile and nanoindenter devices. The application of copolymer with oligo(l,d-lactide) side chains led to higher processability during two-photon stereolithography in terms of the response to the laser beam, reproduction of the digital model, and the mechanical properties of the fabricated hydrogels.
机译:已通过无溶剂机械化学技术合成了具有相对较长的低聚乳酸交接链的各种立体化学组成的壳聚糖-g-低聚乳酸共聚物,并使用两光子诱导的微立体光刻技术对其进行了定制,以制造三维水凝胶。使用分数分析,FTIR光谱,动态光散射和紫外分光光度法评估了用于合成的壳聚糖和低聚丙交酯的特性对接枝产率和共聚物行为的影响。对于具有较高分子量的壳聚糖,该体系的共聚物收率最低,而由低分子量壳聚糖组成的样品则显示出较高的接枝度,这在l,l-或l,d-低聚丙交酯的情况下均相当嫁接。根据共聚物的特性和立体光刻条件,评估了在双光子立体光刻过程中共聚物的可加工性。使用光学和扫描电子显微镜,以及使用拉伸和纳米压头设备,研究了模型薄膜样品和制成的3D水凝胶的结构和力学性能。在对激光束的响应,数字模型的再现以及所制备的水凝胶的机械性能方面,具有低聚(l,d-丙交酯)侧链的共聚物的应用导致在双光子立体光刻过程中具有更高的可加工性。

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