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Globular and Fibrous Proteins Modified with Deep Eutectic Solvents: Materials for Drug Delivery

机译:深共晶溶剂修饰的球状和纤维蛋白:药物输送材料

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摘要

Proteinaceous materials have numerous structures, many of which aid in the roles they perform. Some need to impart strength while others need elasticity or toughness. This study is the first to investigate the modification of both globular and fibrous protein, namely, zein, soy protein and gelatin, using deep eutectic solvents (DES) to form bioplastics, which may have application in drug delivery systems. The effects of DES content on the thermal and mechanical properties of the material were determined. Zein and soy are globular proteins, which both showed a significant change in the properties by the addition of DES. Both of these materials were, however, weaker and less ductile than the starch based materials previously reported in the literature. The material made from gelatin, a fibrous protein, showed variable properties depending on how long they were in contact with each other before pressing. Conductivity and NMR measurements indicate the existence of a continuous liquid phase, which are useful in the demonstrated application of transdermal drug delivery systems. It is shown that pharmaceutical DESs can be gelled with gelatin and this method is three times faster at delivering a pharmaceutical active ingredient across the skin barrier than from a corresponding solid formulation.
机译:蛋白质材料具有许多结构,其中许多有助于它们发挥作用。有些需要赋予强度,而另一些则需要弹性或韧性。这项研究是第一个研究使用深共熔溶剂(DES)形成生物塑料的球形和纤维蛋白(玉米蛋白,大豆蛋白和明胶)的修饰方法,该方法可能在药物输送系统中得到应用。确定了DES含量对材料的热和机械性能的影响。玉米醇溶蛋白和大豆是球状蛋白,通过添加DES二者均显示出性质的显着变化。然而,这两种材料都比先前文献中报道的淀粉基材料更弱,并且延展性更低。由明胶(一种纤维蛋白)制成的材料显示出可变的特性,这取决于它们在压制之前彼此接触的时间。电导率和NMR测量表明存在连续液相,这在经皮药物传递系统的已证明应用中很有用。结果表明,药物DES可以与明胶凝胶化,与通过相应的固体制剂给药相比,该方法通过皮肤屏障递送药物活性成分的速度要快三倍。

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