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Physicochemical Properties and Cell Viability of Shrimp Chitosan Films as Affected by Film Casting Solvents. I-Potential Use as Wound Dressing

机译:由薄膜浇铸溶剂影响的虾壳聚糖膜的物理化学性质和细胞活力。我潜在用作伤口敷料

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摘要

Chitosan solubility in aqueous organic acids has been widely investigated. However, most of the previous works have been done with plasticized chitosan films and using acetic acid as the film casting solvent. In addition, the properties of these films varied among studies, since they are influenced by different factors such as the chitin source used to produce chitosan, the processing variables involved in the conversion of chitin into chitosan, chitosan properties, types of acids used to dissolve chitosan, types and amounts of plasticizers and the film preparation method. Therefore, this work aimed to prepare chitosan films by the solvent casting method, using chitosan derived from Litopenaeus vannamei shrimp shell waste, and five different organic acids (acetic, lactic, maleic, tartaric, and citric acids) without plasticizer, in order to evaluate the effect of organic acid type and chitosan source on physicochemical properties, degradation and cytotoxicity of these chitosan films. The goal was to select the best suited casting solvent to develop wound dressing from shrimp chitosan films. Shrimp chitosan films were analyzed in terms of their qualitative assessment, thickness, water vapor permeability (WVP), water vapor transmission rate (WVTR), wettability, tensile properties, degradation in phosphate buffered saline (PBS) and cytotoxicity towards human fibroblasts using the resazurin reduction method. Regardless of the acid type employed in film preparation, all films were transparent and slightly yellowish, presented homogeneous surfaces, and the thickness was compatible with the epidermis thickness. However, only the ones prepared with maleic acid presented adequate characteristics of WVP, WVTR, wettability, degradability, cytotoxicity and good tensile properties for future application as a wound dressing material. The findings of this study contributed not only to select the best suited casting solvent to develop chitosan films for wound dressing but also to normalize a solubilization protocol for chitosan, derived from Litopenaeus vannamei shrimp shell waste, which can be used in the pharmaceutical industry.
机译:壳聚糖在水性有机酸中的溶解度已被广泛研究。然而,以前的大部分作品已经用增塑壳聚糖薄膜和使用醋酸作为薄膜浇铸溶剂来完成。此外,这些薄膜的性质在研究中变化,因为它们受到用于产生壳聚糖的几丁质源等不同因素的影响,所涉及将甲壳素转化为壳聚糖,壳聚糖性质,用于溶解的酸类型的加工变量壳聚糖,类型和增塑剂的类型和薄膜制备方法。因此,这项工作旨在通过溶剂铸造方法制备壳聚糖薄膜,使用来自Litopenaeus vannamei虾壳废物的壳聚糖,以及没有增塑剂的五种不同的有机酸(醋酸,乳酸,马来酸,柠檬酸和柠檬酸),以评估有机酸型和壳聚糖来源对这些壳聚糖膜的物理化学性质,降解和细胞毒性的影响。目标是选择最适合的铸造溶剂,以从虾壳聚糖薄膜上发育伤口敷料。根据其定性评估,厚度,水蒸气渗透率(WVP),水蒸气透射率(WVTR),润湿性,拉伸性能,磷酸盐缓冲盐水(PBS)的降解和朝向人成纤维细胞的细胞毒性,分析虾壳聚糖薄膜。使用转基因减少方法。无论薄膜制剂中采用的酸型,所有薄膜都是透明的,呈微黄,呈均匀的表面,厚度与表皮厚度相容。然而,只有用马来酸制备的那些,呈现了WVP,WVTR,润湿性,可降解性,细胞毒性和良好的拉伸性能的适当特征,以便将来应用作为伤口敷料材料。本研究的结果不仅为选择最适合的铸造溶剂来开发用于伤口敷料的壳聚糖薄膜,而且为了使壳聚糖的溶解方案正常化,衍生自Litopenaeus Vannamei虾壳废物,其可用于制药行业。

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