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Development and in vitro evaluation of chitosan-Eudragit RS 30D composite wound dressings

机译:壳聚糖-Eudragit RS 30D复合伤口敷料的研制与体外评价

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摘要

The purpose of this research was to design and evaluate chitosan-based films intended for wound dressing application. Required properties for successful wound dressing, such as liquid uptake, vapor and oxygen penetration, bioadhesiveness, and film elasticity, were examined. Water uptake and vapor penetration of the films were determined gravimetrically, while oxygen penetration was determined by Winkler’s method. The bioadhesive properties were determined with an in-house pulley system instrument using a pig gut model. Film elasticity was determined with a stretch test using an Instron apparatus. The results showed that pure chitosan films exhibited relatively high liquid uptake and the adsorption tended to decrease with the addition of Eudragit RS 30D. Moisture vapor and oxygen were found to be able to penetrate through all film formulations in comparable amounts. The bioadhesiveness test tended to show lower bioadhesive properties with the addition of Eudragit RS 30D. The formulation containing only chitosan exhibited low elongation of the film at 2 N, but the film elasticity increased with the addition of Eudragit RS 30D. In conclusion, the addition of Eudragit RS 30D could improve a film’s mechanical properties but lower its bioadhesiveness.
机译:这项研究的目的是设计和评估用于伤口敷料的基于壳聚糖的薄膜。检查了成功伤口敷料所需的特性,例如液体吸收,蒸汽和氧气渗透,生物粘附性和薄膜弹性。用重量分析法测定薄膜的吸水率和蒸气渗透率,而用Winkler法测定氧的渗透率。使用猪肠模型用室内滑轮系统仪器测定生物粘附性能。使用Instron装置通过拉伸试验测定膜的弹性。结果表明,加入Eudragit RS 30D后,纯的壳聚糖膜表现出较高的液体吸收,并且吸附趋于降低。发现湿蒸汽和氧气能够以相当的量渗透所有薄膜制剂。添加Eudragit RS 30D后,生物粘附力测试往往显示出较低的生物粘附特性。仅包含壳聚糖的配方在2 N时表现出较低的薄膜伸长率,但是随着Eudragit RS 30D的加入,薄膜的弹性增加。总之,添加Eudragit RS 30D可以改善薄膜的机械性能,但会降低其生物粘附性。

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