Delavari Mohammad Mohsen, Ocampo Ixchel, Stiharu Ion
Department of Mechanical, Industrial, and Aerospace Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.
School of Engineering and Sciences, Tecnológico de Monterrey, Av. Eugenio Garza Sada 2501 Sur, Monterrey 64849, Mexico.
Micromachines (Basel). 2022 Dec 4;13(12):2146. doi: 10.3390/mi13122146.
This paper utilizes response surface methodology (RSM) design-based analyses to optimize starch-based wound dressings that were characterized based on weight loss (WL%), swelling index (SI%), and mechanical strength (TS). The wound-dressing materials were prepared by employing a modified casting method, using various concentrations of starch (0.5-2 /%), polyvinyl alcohol (PVA) (0.5-2 weight%), citric acid (1.5-4 weight%), and glycerol (1.5-4 weight%) to yield wound-dressing films with appropriate combinations of in vitro degradation, swelling index, and tensile strength. As a result of the response surface method-based analysis, the swelling index, in vitro degradation, and tensile strength were linearly related to variations in the formulation of organic components. Based on our experimental investigations, the optimized film (formulation: 1 weight% PVA, 2 weight% starch, 1.5 weight% citric acid, and 1.5 weight% glycerol) exhibited an outstanding swelling index (343.52%), suitable in vitro degradation (53.22%), and excellent tensile strength (8.82 MPa). The response surface plots for the dependent variables, swelling index (SI%), weight loss (WL%), and mechanical strength (TS), showed that in all dual relations, the PVA-starch combination significantly affected all dependent variables; however, the PVA-citric acid interaction showed the most excellent effect on the swelling index. As a result, every component of the resulting film had a lesser amount of all ingredients to achieve better properties at a lower material cost. Starch-based/PVA films have been identified in this paper as optimal and more affordable wound-dressing films.
本文采用基于响应面法(RSM)设计的分析方法,对基于重量损失(WL%)、溶胀指数(SI%)和机械强度(TS)进行表征的淀粉基伤口敷料进行优化。伤口敷料材料采用改良浇铸法制备,使用不同浓度的淀粉(0.5 - 2%)、聚乙烯醇(PVA)(0.5 - 2重量%)、柠檬酸(1.5 - 4重量%)和甘油(1.5 - 4重量%),以制备出具有合适的体外降解、溶胀指数和拉伸强度组合的伤口敷料薄膜。基于响应面法的分析结果表明,溶胀指数、体外降解和拉伸强度与有机成分配方的变化呈线性关系。基于我们的实验研究,优化后的薄膜(配方:1重量% PVA、2重量%淀粉、1.5重量%柠檬酸和1.5重量%甘油)表现出出色的溶胀指数(343.52%)、合适的体外降解率(53.22%)和优异的拉伸强度(8.82 MPa)。因变量溶胀指数(SI%)、重量损失(WL%)和机械强度(TS)的响应面图表明,在所有二元关系中,PVA - 淀粉组合对所有因变量均有显著影响;然而,PVA - 柠檬酸相互作用对溶胀指数的影响最为显著。因此,所得薄膜的每种成分所含的所有成分量较少,从而能以较低的材料成本实现更好的性能。本文已确定淀粉基/PVA薄膜是最佳且更经济实惠的伤口敷料薄膜。