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Genetically Engineered Mucoadhesive Spider Silk

机译:转基因粘膜粘膜丝绸

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Mucoadhesion is defined as the adhesion of a material to the mucus gel covering the mucous membranes. The mechanisms controlling mucoadhesion include nonspecific electrostatic interactions and specific interactions between the materials and the mucins, the heavily glycosylated proteins that form the mucus gel. Mucoadhesive materials can be used to develop mucosal wound dressings and noninvasive transmucosal drug delivery systems. Spider silk, which is strong, biocompatible, biodegradable, nontoxic, and lightweight would serve as an excellent base for the development of such materials. Here, we investigated two variants of the partial spider silk protein 4RepCT genetically engineered in order to functionalize them with mucoadhesive properties. The pLys-4RepCT variant was functionalized with six cationically charged lysines, aiming to provide nonspecific adhesion from electrostatic interactions with the anionically charged mucins, while the hGal3-4RepCT variant was genetically fused with the Human Galectin-3 Carbohydrate Recognition Domain which specifically binds the mucin glycans Gal beta 1-3GlcNAc and Gal beta 1-4GlcNAc. First, we demonstrated that coatings, fibers, meshes, and foams can be readily made from both silk variants. Measured by the adsorption of both bovine submaxillary mucin and pig gastric mucin, the newly produced silk materials showed enhanced mucin binding properties compared with materials of wild-type (4RepCT) silk. Moreover, we showed that pLys-4RepCT silk coatings bind mucins through electrostatic interactions, while hGal3-4RepCT silk coatings bind mucins through specific glycan-protein interactions. We envision that the two new mucoadhesive silk variants pLys-4RepCT and hGal3-4RepCT, alone or combined with other biofunctional silk proteins, constitute useful new building blocks for a range of silk protein-based materials for mucosal treatments.
机译:粘膜粘附被定义为覆盖粘膜的粘膜凝胶的材料的粘附性。控制粘膜的机制包括非特异性的静电相互作用和材料与粘蛋白之间的特异性相互作用,其含有粘液凝胶的重糖基化蛋白质之间。粘膜粘附材料可用于开发粘膜伤口敷料和非侵入性透明菌药递送系统。蜘蛛丝,这是强大的,生物相容性,可生物降解,无毒,轻质,作为这种材料的开发的优异基础。在这里,我们研究了遗传工程的部分蜘蛛丝蛋白4Repct的两个变体,以便用粘膜粘附性能官能化。用六个阳离子电荷的赖氨酸官能化的帘子层-4Repct变体,旨在提供与阴离子电荷的粘液的静电相互作用的非特异性粘附,而Hgal3-4repct变体与人的半抗凝蛋白-3碳水化合物识别结构域遗传融合,该粘合剂识别结构件特异性结合粘蛋白Glycans Galβ1-3GlcNAC和GALβ1-4GLCNAc。首先,我们证明了涂料,纤维,网状物和泡沫可以容易地由丝绸变体制成。通过对牛亚夏粘蛋白和猪胃粘蛋白的吸附来测量,新产生的丝绸材料显示出增强的粘蛋白结合特性与野生型(4repct)丝材料相比。此外,我们展示了Plys-4Repct丝绸涂层通过静电相互作用将粘蛋白结合,而HGAL3-4Repct丝绸涂层通过特定的聚糖蛋白相互作用结合粘蛋白。我们想象,两种新的粘液丝丝变体帘布层-4Repct和Hgal3-4Repct,单独或与其他生物功能丝蛋白相结合,构成了一系列丝蛋白的粘膜治疗材料的有用新的建筑块。

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  • 来源
    《Biomacromolecules 》 |2018年第8期| 共12页
  • 作者单位

    AlbaNova Univ Ctr Sch Engn Sci Chem Biotechnol &

    Hlth Royal Inst Technol Dept Chem Div Glycosci KTH S-10691 Stockholm Sweden;

    AlbaNova Univ Ctr Sch Biotechnol Div Prot Technol KTH Royal Inst Technol S-10691 Stockholm Sweden;

    AlbaNova Univ Ctr Sch Engn Sci Chem Biotechnol &

    Hlth Royal Inst Technol Dept Chem Div Glycosci KTH S-10691 Stockholm Sweden;

    Kungliga Tekn Hogskolan Fibre &

    Polymer Technol Tekn Ringen 56 S-10044 Stockholm Sweden;

    Kungliga Tekn Hogskolan Fibre &

    Polymer Technol Tekn Ringen 56 S-10044 Stockholm Sweden;

    AlbaNova Univ Ctr Sch Engn Sci Chem Biotechnol &

    Hlth Royal Inst Technol Dept Chem Div Glycosci KTH S-10691 Stockholm Sweden;

    AlbaNova Univ Ctr Sch Engn Sci Chem Biotechnol &

    Hlth Royal Inst Technol Dept Chem Div Glycosci KTH S-10691 Stockholm Sweden;

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