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国家自然科学基金(30800223)

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小麦蛋白膜的体外生物相容性研究
2011年
目的研究小麦蛋白的体外生物相容性,探索其用作生物医用材料的潜在可能。方法以聚乳酸膜为对照,进行了细胞相容性试验(包括浸提液细胞毒性试验和细胞直接接触试验)和血液相容性试验(包括溶血试验、血小板粘附试验和动态凝血时间试验)。结果小麦蛋白膜浸提液细胞毒性评价合格;大鼠成骨样细胞Ros17/2.8在小麦蛋白膜上的粘附和铺展程度比在聚乳酸膜上更充分;小麦蛋白膜溶血率为0.5%,符合医用材料对溶血控制的要求,血小板粘附于小麦蛋白膜后的形态指数为1.56,低于聚乳酸组的2.54,即激活程度更低,血液在小麦蛋白膜表面的初凝时间为14 min,较聚乳酸组延迟了9min。结论小麦蛋白具有良好的生物相容性,可望用作生物医用材料。
陈静杨克许庆张小华罗祥林陈元维
关键词:小麦蛋白细胞相容性血液相容性生物医用材料
Preparation and Characterization of Chitosan Composite Membranes Crosslinked by Carboxyl-capped Poly(ethylene glycol)被引量:1
2014年
In this study a series of chemically crosslinked chitosan/poly(ethylene glycol) (CS/PEG) composite membranes were prepared with PEG as a crosslinking reagent other than an additional blend. First, carboxyl-eapped poly(ethylene glycol) (HOOC-PEG-COOH) was synthesized. Dense CS/PEG composite membranes were then prepared by casting/evaporation of CS and HOOC-PEG-COOH mixture in acetic acid solution. Chitosan was chemically crosslinked due to the amidation between the carboxyl in HOOC-PEG-COOH and the amino in chitosan under heating, as confirmed by FTIR analysis. The hydrophilicity, water-resistance and mechanical properties of pure and crosslinked chitosan membranes were characterized, respectively. The results of water contact angle and water absorption showed that the hydrophilicity of chitosan membranes could be significantly improved, while no significant difference of weight loss between pure chitosan membranes and crosslinked ones was detected, indicating that composite membranes with amidation crosslinking possess excellent water resistanance ability. Moreover, the tensile strength of chitosan membranes could be significantly enhanced with the addition of certain amount of HOOC-PEG-COOH crosslinker, while the elongation at break didn't degrade at the same time. Additionally, the results of swelling behaviors in water at different pH suggested that the composite membranes were pH sensitive.
Meng-tan CaiJia-xing Zhang陈元维Jun CaoMeng-tian LengShao-dong Hua罗祥林
关键词:CHITOSAN
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