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Synthesis and Characterization of a New Polysaccharide-graft-polymethacrylate Copolymer for Three-Dimensional Hybrid Hydrogels

机译:新型用于三维杂化水凝胶的多糖接枝聚甲基丙烯酸甲酯共​​聚物的合成与表征

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摘要

Hybrid materials constituted by hydrophobic and hydrophilic biocompatible macromolecules are useful for biomedical applications. In this context, a well-known acrylic monomer (methyl methacrylate) was polymerized and grafted onto the polysaccharide dextran by the use of ceric ammonium nitrate as a redox initiator in aqueous nitric acid medium. The effects of concentrations of dextran, acrylic monomer, and ceric ions on the copolymerization yields were investigated in detail. The obtained polymers were studied by solubility measurements, Fourier transform infrared spectrometry, ~(13)C nuclear magnetic resonance spectroscopy, and viscosimetric analysis. Interestingly, we found conditions to form transparent and homogeneous thin films or 3D structures with hybrid properties. Indeed, the copolymer, but not dextran or PMMA, could be dissolved in water/THF (20/80 v/v). The thermomechanical properties of the resulting copolymer analyzed by differential scanning calorimetry and dynamic mechanical analysis showed the occurrence of a single glass-transition temperature and a marked difference with the two homopolymers. The cytocompatibility of the copolymer with human endothelial cells was evidenced by the normal cell adhesion, proliferation, and morphology after 5 days in culture on these gels. In conclusion, this type of copolymer with hybrid properties of two biocompatible macromolecules could be of great interest as a 3D scaffold or for coating in biomedical applications.
机译:由疏水性和亲水性生物相容性大分子构成的杂化材料可用于生物医学应用。在这种情况下,通过在硝酸水溶液中使用硝酸铈铵作为氧化还原引发剂,将众所周知的丙烯酸单体(甲基丙烯酸甲酯)聚合并接枝到多糖葡聚糖上。详细研究了右旋糖酐,丙烯酸单体和铈离子的浓度对共聚产率的影响。通过溶解度测量,傅立叶变换红外光谱,〜(13)C核磁共振光谱和粘度分析研究所得聚合物。有趣的是,我们发现了形成透明且均匀的具有混合特性的薄膜或3D结构的条件。实际上,该共聚物而不是右旋糖酐或PMMA可以溶于水/ THF(20/80 v / v)。通过差示扫描量热法和动态力学分析分析的所得共聚物的热机械性能表明,发生了单一的玻璃化转变温度,并且两种均聚物存在明显的差异。在这些凝胶上培养5天后,正常的细胞粘附,增殖和形态证明了共聚物与人内皮细胞的细胞相容性。总之,这种具有两种生物相容性大分子杂化性质的共聚物作为3D支架或用于生物医学应用中的涂层,可能引起人们的极大兴趣。

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