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首页> 外文期刊>Journal of Applied Polymer Science >Encapsulation of Oil in Silk Fibroin Biomaterials
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Encapsulation of Oil in Silk Fibroin Biomaterials

机译:丝素蛋白生物材料中油的包封

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Microencapsulation is becoming increasingly important in the food, cosmetics, and medicinal industries due to its potential for stabilization and delivery of volatile and delicate compounds. Novel food-safe techniques for encapsulating oil in silk biomaterials using emulsion-based processes that exploit silk's unique properties (including amphiphilicity, biocompatibility, aqueous and ambient processing, and tunable physical crosslinking behavior) are described. The sonication-induced self-assembly of silk previously applied to hydrogel fabrication replaced the use of the thermal or chemical suspension crosslinking traditionally used to stabilize the aqueous protein phase in emulsions. Stable, physically crosslinked silk micro- and macro-particles loaded with oil or water-soluble dye were produced by aliquoting sonicated silk solutions into an oil bath. Oil micro-droplets emulsified in aqueous silk solutions did not impede the self-assembly of silk into films or hydrogel networks. In O/W/O emulsions, particle morphology and silk permeability to a model lipophilic dye in the interior phase were controllable via processing.
机译:由于微胶囊具有稳定和释放挥发性和微妙化合物的潜力,因此在食品,化妆品和医药行业中变得越来越重要。描述了一种新的食品安全技术,该技术使用基于乳液的工艺将丝绸封装在丝绸生物材料中,该工艺利用了丝绸的独特特性(包括两亲性,生物相容性,水和环境处理以及可调的物理交联行为)。以前应用于水凝胶制造的丝绸的声波诱导自组装代替了传统上用于稳定乳液中蛋白质水相的热悬浮或化学悬浮交联。通过将超声处理过的丝绸溶液等分到油浴中,可以制得稳定的,物理交联的,载有油或水溶性染料的丝绸微粒和宏观微粒。在水性丝绸溶液中乳化的油微滴不会阻碍丝绸自组装成薄膜或水凝胶网络。在O / W / O乳液中,通过加工可控制内部相中模型亲脂性染料的颗粒形态和丝渗透性。

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