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Influence of cross-linkers on the properties of cotton grafted poly (acrylamide-co-acrylic acid) hydrogel composite: swelling and drug release kinetics

机译:交联剂对棉花嫁接聚(丙烯酰胺 - 共丙烯酸)水凝胶复合材料性能的影响:溶胀和药物释放动力学

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Cross-linker plays a crucial role in monitoring water holding and drug release properties of a hydrogel system, an essential requirement for smart wound dressings. Present study is focused on the influence of cross-linkers poly ethylene glycol (PEG) and N,NMODIFIER LETTER PRIME-methylene bisacrylamide (MBAAm) on the properties of poly (acrylamide-co-acrylic acid) hydrogel grafted over the cotton fabric to form composite for medicated dressings. Fourier transform infrared spectroscopy (FTIR) confirms the grafting of hydrogel on the cotton fabric. Uniform hydrogel layer on the cotton surface is obtained under scanning electron microscopy (SEM). Swelling of the composite prepared using PEG follow first-order kinetics at acidic and neutral pH whereas second-order kinetic model at pH 8.5 while that prepared using MBAAm follow second-order kinetic equation at all the pHs studied. The swelling kinetics is also governed by Peppas model at all pHs. Release of gentamicin sulphate from both the composites are studied in phosphate buffers having pH 4.5, 7 and 8.5 at 37 +/- 0.1 degrees C and observed that it is fastest in phosphate buffer having pH 7. On fitting drug release data into Peppas model, first and second-order kinetic equations, it is found that drug release is diffusion controlled and follows Fickian diffusion mechanism in case of the composite prepared by using PEG as cross-linker, whereas it is controlled by diffusion as well as chain relaxation in case of the composite prepared by using MBAAm. Mechanical testing using universal testing machine supports a higher mechanical strength of the hydrogel composite as compared to its film.
机译:交联剂在监测水凝胶系统的水持和药物释放性能方面发挥着至关重要的作用,这是智能伤口敷料的必要要求。目前的研究专注于交联剂聚乙二醇(PEG)和N,Nmodifier字母哌亚甲基双丙烯酰胺(MBAAM)对棉织物覆盖的聚(丙烯酰胺 - 共丙烯酸)水凝胶的性能进行影响药物敷料复合材料。傅里叶变换红外光谱(FTIR)证实了棉织物上水凝胶的接枝。在扫描电子显微镜(SEM)下获得棉表面上的均匀水凝胶层。使用PEG在酸性和中性pH下使用PEG制备的复合材料的溶胀,而在pH 8.5的二阶动力学模型,而使用MBAAM制备在所有研究的pHS中遵循二阶动力学方程。肿胀动力学也受Peppas模型的所有phs的管辖。在37 +/- 0.1℃下的磷酸盐缓冲液中释放来自两种复合材料的硫酸丝蛋白硫酸盐,并观察到它在具有pH 7的磷酸盐缓冲液中最快的磷酸盐缓冲液中最快的。第一和二阶动力学方程,发现药物释放是扩散控制,并且在通过使用PEG作为交联剂制备的复合材料的情况下,遵循Fickian扩散机制,而它由扩散控制以及链松弛通过使用MBAAM制备的复合材料。与薄膜相比,使用通用试验机的机械测试支持水凝胶复合材料的更高机械强度。

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