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Biodegradability and anticoagulant properties of chitosan and sulfonated chitosan films coated on TiNi alloys

机译:TiNi合金上包覆的壳聚糖和磺化壳聚糖薄膜的生物降解性和抗凝性

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摘要

This study proposes a method of coating chitosan and sulfonated chitosan surface modification films on nickel-titanium shape memory alloys and investigates their biodegradability and anticoagulant properties. Sulfonated chitosan has a similar structure to chitosan, although amino groups convert during the sulfonation process. The biodegradation of chitosan by Escherichia coli DH5α does not occur when the concentration of chitosan is sufficiently high because the electrostatic interactions between the amino groups and phospholipid components damage the cell membranes of E. coli DH5α. By contrast, the biodegradation of sulfonated chitosan is independent of its concentration because the sulfonation process results in a decrease in the number of amino groups present. Bicinchoninic acid protein assay results reveal that the amount of fibrin adhered on the deposited natural chitosan surface is twice that adhered to sulfonated chitosan.
机译:这项研究提出了一种在镍钛形状记忆合金上涂覆壳聚糖和磺化壳聚糖表面改性膜的方法,并研究了它们的生物降解性和抗凝性能。磺化壳聚糖的结构与壳聚糖相似,尽管氨基在磺化过程中会发生转化。当壳聚糖的浓度足够高时,大肠杆菌DH5α不会发生壳聚糖的生物降解,因为氨基和磷脂成分之间的静电相互作用会破坏大肠杆菌DH5α的细胞膜。相反,磺化壳聚糖的生物降解作用与其浓度无关,因为磺化过程会导致存在的氨基数量减少。双辛可宁酸蛋白质测定结果表明,附着在沉积的天然壳聚糖表面的血纤维蛋白量是附着于磺化壳聚糖的两倍。

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