Emam Hossam E, Mohamed Amina L
Department of Pretreatment and Finishing of Cellulosic Based Textiles, Textile Industries Research Division, National Research Centre, Giza 12622, Egypt.
Polymers (Basel). 2021 Sep 15;13(18):3118. doi: 10.3390/polym13183118.
Povidone-iodine (PI) is a common antiseptic reagent which is used for skin infections and wound healing. The control release of PI is quite important to heal the deep and intense wounds. Herein, the preparation of biodegradable pectin@carboxymethyl pullulan (Pe@CMP) hydrogel was carried out and applied for controllable release of PI. CMP was synthesized by interaction of monochloroacetic acid with pullulan at different ratios. The Pe@CMP hydrogel was then prepared by crosslinking of pectin with CMP in presence of glutaraldehyde as cross linker. After carboxymethylation, COOH contents were enlarged to be 24.2-51.2 mmol/kg and degree of substitution was 0.44-0.93. The rheological properties of Pe@CMP hydrogel were enlarged by increment of pectin ratio. Swelling ratio in water (16.0-18.0%) was higher than that of artificial sweat (11.7-13.2%). Pe@CMP hydrogel containing 20% pectin, exhibited the lowest release and 57.7% from PI was released within 360 min. The biological activity of the released PI was monitored to be highly efficient. The kinetic of release was fitted well to the first ordered reaction and Higuchi models. The mechanism of release was explained by the swelling of hydrogel. The networked structure of hydrogel was opened by swelling and PI was released from the outer pores followed by inner pores, achieving the controllable release.
聚维酮碘(PI)是一种常见的用于皮肤感染和伤口愈合的抗菌试剂。PI的控释对于治疗深度和严重伤口非常重要。在此,进行了可生物降解的果胶@羧甲基普鲁兰多糖(Pe@CMP)水凝胶的制备,并将其应用于PI的可控释放。通过一氯乙酸与普鲁兰多糖以不同比例相互作用合成了CMP。然后在戊二醛作为交联剂的存在下,通过果胶与CMP交联制备了Pe@CMP水凝胶。羧甲基化后,COOH含量增加到24.2 - 51.2 mmol/kg,取代度为0.44 - 0.93。随着果胶比例的增加,Pe@CMP水凝胶的流变学性质增强。在水中的溶胀率(16.0 - 18.0%)高于在人工汗液中的溶胀率(11.7 - 13.2%)。含有20%果胶的Pe@CMP水凝胶表现出最低的释放率,在360分钟内释放了57.7%的PI。监测到释放的PI的生物活性很高。释放动力学与一级反应和Higuchi模型拟合良好。通过水凝胶的溶胀来解释释放机制。水凝胶的网络结构通过溶胀打开,PI从外部孔隙然后是内部孔隙释放,实现了可控释放。