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Biodegradation of polyelectrolyte complex films composed of chitosan and sodium cellulose sulfate as the controllable release carrier

机译:壳聚糖和硫酸钠纤维素作为可控释放载体的聚电解质复合膜的生物降解

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摘要

For the applications of polyelectrolyte complex (PEC) of chitosan and sodium cellulose sulfate (NaCS) as the controlled release drug carrier, the biodegradation characteristics of chitosan, NaCS and chi-tosan/NaCS PEC films were investigated with pepsin, trypsin, lipase, α-amylase, and cellulase. The results showed that pepsin, amylase, trypsin and lipase have the appreciable hydrolytic activity to chitosan, but cannot degrade NaCS. However, cellulase showed high cellulosic activity and low chitosanolytic activity. For the hydrolysis of chitosan/NaCS films, the degradation rates were greatly influenced by the molecular weights of chitosan and NaCS. In vitro tests showed that different formulations caused diverse disintegration time of the films through the gastrointestinal tract. The results indicated the PEC based on chitosan and NaCS showed good potential for the gastrointestinal delivery systems.
机译:为了应用壳聚糖和硫酸钠纤维素钠(NaCS)的聚电解质复合物(PEC)作为控释药物载体,使用胃蛋白酶,胰蛋白酶,脂肪酶,α研究了壳聚糖,NaCS和壳聚糖/ NaCS PEC膜的生物降解特性。 -淀粉酶和纤维素酶。结果表明,胃蛋白酶,淀粉酶,胰蛋白酶和脂肪酶对壳聚糖具有明显的水解活性,但不能降解NaCS。但是,纤维素酶显示出高纤维素活性和低壳聚糖分解活性。对于壳聚糖/ NaCS膜的水解,降解速度受到壳聚糖和NaCS分子量的很大影响。体外试验表明,不同的制剂导致薄膜在胃肠道中的崩解时间不同。结果表明,基于壳聚糖和NaCS的PEC在胃肠道递送系统中显示出良好的潜力。

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