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Multilayered Controlled Drug Release Silk Fibroin Nanofilm by Manipulating Secondary Structure

机译:通过操纵二级结构的多层控制药物释放丝纤维素纳米膜

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摘要

Many studies of drug delivery nanoplatforms have explored drug loading affinity and controlled release. The nanoplatforms can be influenced by their inherent building blocks. Natural polypeptide silk fibroin (SF) is an excellent nanoplatform material because of its high biocompatibility and unique structural properties. SF secondary structures have different properties that can be changed by external stimuli. Thus, the characterization of SF-containing platforms is strongly affected by secondary structure transformations. Structural changes can occur spontaneously, which hinders the control of structural variation in aqueous conditions. Herein, we successfully prepared a controllable secondary structure composed of SF/heparin (HEP) layer-by-layer assembled nanofilms using simple solvents (glycerol and methanol). SF in the SF/HEP nanofilms takes up than 90%, which means configurations of SF have a strong effect on the character of the nanofilms. We investigated the degradation profiles of SF/HEP nanofilms depending on their beta-sheet contents and demonstrated an immediate correlation between the transformation of secondary structures inside the nanofilms and the degree of degradation of nanofilms. Finally, SF/HEP nanofilms were used as a delivery platform for incorporating the anticancer drug epirubicin (EPI). We could control the loading efficiency and release profile of EPI with various beta-sheet contents of the nanofilms.
机译:许多对药物递送纳米片的研究已经探索了药物负载亲和力和控制释放。纳米纳薄物可以受到固有构建块的影响。天然多肽丝素蛋白(SF)是一种优异的纳米型材料,因为其高生物相容性和独特的结构性能。 SF二级结构具有不同的属性,可以通过外部刺激改变。因此,含SF平台的表征受二级结构转换的强烈影响。结构变化可以自发发生,阻碍了水性条件的结构变化的控制。在此,我们成功地制备了使用简单溶剂(甘油和甲醇)的由SF /肝素(HEP)层组装的纳米丝组成的可控次级结构。 SF / HEP Nanofilms中的SF比90%高,这意味着SF的配置对纳米箔的特征有很大的影响。我们研究了SF / HEP NANOFILMS的降解谱,这取决于其β-片状物,并证明了纳米叶片内的二次结构的转化与纳米丝的降解程度之间立即相关性。最后,SF / HEP Nanofilms被用作掺入抗癌药物表皮蛋白(EPI)的递送平台。我们可以通过纳米岩的各种β-薄片含量控制EPI的加载效率和释放曲线。

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  • 来源
    《Biomacromolecules》 |2018年第7期|共8页
  • 作者单位

    Yonsei Univ Coll Engn Dept Chem &

    Biomol Engn 50 Yonsei Ro Seoul 03722 South Korea;

    Yonsei Univ Coll Engn Dept Chem &

    Biomol Engn 50 Yonsei Ro Seoul 03722 South Korea;

    Yonsei Univ Coll Engn Dept Chem &

    Biomol Engn 50 Yonsei Ro Seoul 03722 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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