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Novel curcumin-loaded chitosan-polyelectrolyte complexed nanoparticles and their characteristics

机译:新型姜黄素加载的壳聚糖 - 聚电解质络合物纳米颗粒及其特性

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摘要

Curcumin was incorporated into oil/water (o/w) emulsion by dissolving it in soybean oil to cover the surface of the oil droplets with a pH-sensitive polyelectrolyte complex (PEC) composed of chitosan and fucoidan molecules. This curcumin-loading efficiency of the suspension system was investigated. The size and zeta potential distributions of novel curcumin-loaded chitosan nanoparticles self-assembled with fucoidan (CFNPLC) were assessed at various pH and fucoidan-to-chitosan mass ratio (FCMR). The release behavior of curcumin from CFNPLC was confirmed quantitatively by the superimposition of relevant release behavior. The release of curcumin from CFNPLC prepared with a chitosan solution of pH 6 for one to two days was slower than that from CFNPLC prepared with a chitosan solution of pH 3.7 for five to 10 hrs. This was attributed to the higher affinity of a chitosan molecule to curcumin molecules at a higher pH. The centrifugation of release medium accelerated the release of curcumin droplet from the surface of CFNPLC into the release medium much faster than a conventional curcumin release. Not to mention a high stability of curcumin blended with soybean oil, encapsulated in CFNPLC, the advantage of the CFNPLC is addressed in such a way that curcumin releasing period of a conventional curcumin delivery using CFNPLC, is supposed to be extended for much longer time than one to two days of the curcumin release period in this study. Thus, CFNPLC can bring about an enhanced effect of curcumin bioavailability resulting from the high curcumin stability and its extended release because it was dissolved in soybean oil and CFNPLC sustained slow curcumin-release for more than days in the oral drug (curcumin) delivery system. Therefore, CFNPLC can be treated mainly as a food-functional additive or healthy dietary product for tumor patients.
机译:通过将姜黄素掺入油/水(O / W)乳液中,通过将其溶解在大豆油中,用由壳聚糖和岩藻藻分子组成的pH敏感的聚电解质复合物(PEC)覆盖油滴的表面。研究了悬浮系统的这种姜黄素负荷效率。在各种pH和骨屈糖 - 壳聚糖质量比(FCMR)下评估与岩藻蛋白(CFNPLC)自组装的新型姜黄素负载的壳聚糖纳米粒子的尺寸和Zeta潜在分布。通过相关释放行为的叠加来定量地确认来自CFNPLC的姜黄素的释放行为。用壳聚糖溶液的CFNPLC释放姜黄素用壳聚糖溶液释放一至两天的CFNPLC比用壳聚糖溶液的pH3.7的壳聚糖溶液含量为5至10小时。这归因于壳聚糖分子在较高pH下姜黄素分子的较高亲和力。释放培养基的离心加速了从CFNPLC的表面释放到释放介质中的释放,比常规姜黄素释放更快。更不用说与豆油混合的高稳定性与大豆油包裹在CFnPLC中,CFNPLC的优点以使得使用CFNPLC的常规姜黄素递送的姜黄素释放时期应该延长时间比这项研究中的姜黄素释放期的一到两天。因此,CFNPLC可以引起由高姜黄素稳定性和其延伸释放产生的姜黄素生物利用度的增强效果,因为它在口服药物(姜黄素)输送系统中溶解在大豆油和CFNPLC中持续缓慢的姜黄素释放。因此,CFNPLC可以主要是作为肿瘤患者的食品功能性添加剂或健康膳食产品。

著录项

  • 来源
    《The Korean journal of chemical engineering》 |2021年第2期|354-365|共12页
  • 作者单位

    Daegu Univ Coll Engn Dept Chem Engn Gyongsan 38453 Gyeongbuk South Korea|Daegu Univ Lab Pharmaceut Bionanomat Gyongsan 38453 Gyeongbuk South Korea;

    Daegu Univ Coll Engn Dept Chem Engn Gyongsan 38453 Gyeongbuk South Korea;

    Daegu Univ Coll Engn Dept Chem Engn Gyongsan 38453 Gyeongbuk South Korea|Daegu Univ Lab Pharmaceut Bionanomat Gyongsan 38453 Gyeongbuk South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    O; W Emulsion; CFNPLC; Polyelectrolyte Complex; Curcumin; Chitosan; Fucoidan;

    机译:O;W乳液;CFNPLC;聚电解质复合物;姜黄素;壳聚糖;岩藻糖;

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