28124Universidade Federal do Rio Grande do Sul (UFRGS), Chemical Engineering Department (DEQUI), Porto Alegre, Rio Grande do Sul, Brazil.
J Biomater Appl. 2021 Oct;36(4):682-700. doi: 10.1177/0885328221992260. Epub 2021 Feb 8.
The development of hydrogel films for biomedical applications is interesting due to their characteristics. Hydrogel films based on gelatin and poly(vinyl alcohol) (PVA) are developed and characterized using a rotatable central composite design. The optimized hydrogel film is obtained by the function desirability of the Statistica® software and is also characterized by swelling kinetics, oxygen permeability, adhesiveness, TGA, DSC, and XRD. The results of the experimental design show that gelatin and PVA concentrations have a significant influence on the response variables, and the exposure doses to UV light show no significant effect. The optimized hydrogel film is elastic, presents good mechanical resistance and swelling capacity in water and exudate solution, is permeable to oxygen, and is capable of adjusting itself and maintains contact close to the skin. In this way, considering all the properties evaluated, the optimized film has characteristics suitable for biomedical applications as wound dressings.
水凝胶薄膜在生物医学方面的应用很有前景,这与其特性有关。本研究采用旋转中心复合设计开发和表征了基于明胶和聚乙烯醇(PVA)的水凝胶薄膜。通过 Statistica®软件的函数适宜性获得了优化的水凝胶薄膜,并通过溶胀动力学、氧气透过率、粘附性、TGA、DSC 和 XRD 对其进行了表征。实验设计的结果表明,明胶和 PVA 的浓度对响应变量有显著影响,而紫外线照射剂量则没有显著影响。优化后的水凝胶薄膜具有弹性,在水和渗出液中有良好的机械强度和溶胀能力,对氧气具有渗透性,并能够自我调节,保持与皮肤的紧密接触。综上所述,考虑到所有评估的性能,优化后的薄膜具有作为伤口敷料的生物医学应用的特性。