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Gum Arabic/Gelatin and Water-Soluble Soy Polysaccharides/Gelatin Blend Films as Carriers of Astaxanthin—A Comparative Study of the Kinetics of Release and Antioxidant Properties

机译:牙龈阿拉伯语/明胶和水溶性大豆多糖/明胶共混膜作为虾青蛋白的载体 - 释放动力学和抗氧化性能的对比研究

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摘要

Polymer blending and incorporation of active substances offer a possibility of generation of novel packaging materials with interesting features. Astaxanthin is one of the most powerful antioxidants. Hence, in this study, water-soluble AstaSana astaxanthin (AST) was incorporated into 75/25 gum arabic/gelatin (GAR75/GEL25) and water-soluble soy polysaccharides/gelatin (WSSP75/GEL25) blend films in different concentrations (0, 0.25%, 0.5%, 1%). Microscope images showed good compatibility between the polysaccharides and GEL. Basing on time required for 50% release, the WSSP-based film exhibited an approximately four-fold slower release rate (t50% = 65.16–142.80 min) than the GAR-based film (t50% = 14.64–34.02 min). This result was mainly ascribed to the slower dissolution of the WSSP-based carrier. The faster release rate of the GAR-based films resulted in stronger antioxidant activity (quarter-scavenging time (t25%ABTS) = 0.22–7.51 min) in comparison to the WSSP-based films (t25%ABTS = 0.91–12.94 min). The increase in the AST concentration was accompanied by gradually reduced solubility and the release rate. It is possible that the increasing number of starch granules (from the AST formulation) acted as a dissolution blocking agent. In general, the WSSP75/GEL25 film displayed the most linear (the Zero-order similar) release profile. So, this carrier has potential for release of AST at a quasi-constant speed.
机译:聚合物混合和活性物质的掺入提供了具有有趣特征的新型包装材料的可能性。虾青素是最强大的抗氧化剂之一。因此,在本研究中,将水溶性Astasana astaxanthin(Ast)掺入75/25胶/明胶(GAR75 / GEL25)和水溶性大豆多糖/明胶(WSP75 / GEL25)的混合膜,不同浓度(0, 0.25%,0.5%,1%)。显微镜图像显示多糖和凝胶之间的良好相容性。基于50%释放所需的时间,基于WSSP的薄膜比GAR基薄膜(T50%= 14.64-34.02分钟)显示出大约四倍的较慢释放速率(T50%= 65.16-142.80分钟)。该结果主要归因于WSSP基载体的较慢溶解。与基于WSSP的薄膜(T25%ABTS = 0.91-12.94分钟相比,碱基薄膜的更快释放率(四分之一清除时间(T25%ABTS)= 0.22-7.51分钟)导致更强的抗氧化活性(四分之一清除时间(T25%ABTS)= 0.22-7.51分钟)。 AST浓度的增加伴随着逐渐降低的溶解度和释放速率。越来越多的淀粉颗粒(来自AST配方)的作用是溶解阻断剂。通常,WSSP75 / GEL25膜显示最线性(零级类似)释放配置文件。因此,该载体具有以准恒定速度释放AST的可能性。

著录项

  • 期刊名称 Polymers
  • 作者单位
  • 年(卷),期 2021(13),7
  • 年度 2021
  • 页码 1062
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

    机译:食用薄膜;阿拉伯语;水溶性大豆多糖;明胶;FTIR;溶解度;溶解;释放率;数学模型;22-氮基噻唑啉-6-磺酸)二醇盐(ABTS);
  • 入库时间 2022-08-21 12:28:46

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