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Preparation, characterization, and antimicrobial activity of poly(-glutamic acid)/chitosan blends

机译:聚(-谷氨酸)/壳聚糖混合物的制备、表征和抗菌活性

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Biocomposites of poly(-glutamic acid) (PGA) were prepared by a two-screw extruder using chitosan (CS) as the block with glycerol and with/without water and acetic acid as additives. The influences of the CS content and various additives on the properties of PGA/CS blends were investigated. The results of mechanical tests demonstrated that the elongation at break of the blends decreased with increasing quality proportion of CS. Fourier transform infrared spectroscopy revealed that there were ionic interactions in the blends. Thermodynamic characterizations and dynamic mechanical analyses indicated that the glass-transition temperature of the blends decreased with increasing CS proportion and was obviously influenced by additives. X-ray diffractograms indicated that selecting a suitable solvent is beneficial to the blending of raw materials. Morphology analysis showed that the two kinds of substrates exhibited different miscibilities under different conditions. In addition, the antibacterial activities of the blends against Escherichia coli were not obvious because of their limited solubility. Therefore, the PGA/CS blends appear to have potential as a new biomaterial.
机译:以壳聚糖(CS)为嵌段,以甘油为嵌段,加/不加水和醋酸为助剂,采用双螺杆挤出机制备聚谷氨酸(PGA)生物复合材料。研究了CS含量和各种添加剂对PGA/CS共混物性能的影响。力学试验结果表明,随着CS质量比例的增加,共混物断裂伸长率降低,傅里叶变换红外光谱显示共混物中存在离子相互作用。热力学表征和动态力学分析表明,共混物的玻璃化转变温度随CS比例的增加而降低,并明显受到添加剂的影响。X射线衍射图表明,选择合适的溶剂有利于原料的混合。形貌分析表明,两种底物在不同条件下表现出不同的混杂性。此外,由于溶解度有限,混合物对大肠杆菌的抗菌活性并不明显。因此,PGA/CS混合物似乎具有作为新型生物材料的潜力。

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