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首页> 外文期刊>Biomaterials >Protein release kinetics for core-shell hybrid nanoparticles based on the layer-by-layer assembly of alginate and chitosan on liposomes.
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Protein release kinetics for core-shell hybrid nanoparticles based on the layer-by-layer assembly of alginate and chitosan on liposomes.

机译:基于藻酸盐和壳聚糖在脂质体上的逐层组装,核-壳杂化纳米颗粒的蛋白质释放动力学。

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摘要

The present work is focused on the formulation of core-shell nanoparticles via the layer-by-layer (L-b-L) self-assembly technique for delivery of biomacromolecules such as bone growth factors. The drug encapsulation efficiency of liposomes is enhanced with the increased stability of polyelectrolyte systems achieved through the alternate adsorption of several layers of natural polymers: anionic alginate and cationic chitosan on cationic nanosized phospholipid vesicles. The resulting particles were characterized for their size, surface charge, morphology, encapsulation efficiency, loading capacity and release kinetics over an extended period of 30 days. The L-b-L deposition technique succeeded in building a spherical, monodisperse and stable hybrid nanoparticulate protein delivery system with a cumulative size of 383+/-11.5nm and zeta potential surface charge of 44.61+/-3.31mV for five bilayered liposomes. The system offers numerous compartments for encapsulation including the aqueous core and within thepolyelectrolyte shell demonstrating good entrapment and sustained linear release of a model protein, bovine serum albumin, in vitro. Our results demonstrate that this delivery system features an extended shelf life and can be loaded immediately prior to administration, thus preventing any loss of the protein.
机译:当前的工作集中在通过层-层(L-b-L)自组装技术来递送生物大分子(如骨生长因子)的核-壳纳米粒子的配方。通过将几层天然聚合物(阴离子藻酸盐和阳离子壳聚糖)交替吸附在阳离子纳米级磷脂囊泡上,可以提高聚电解质系统的稳定性,从而提高脂质体的药物封装效率。在30天的延长时间内,对所得颗粒的尺寸,表面电荷,形态,包封效率,负载量和释放动力学进行了表征。 L-b-L沉积技术成功地为五个双层脂质体构建了球形,单分散且稳定的杂化纳米颗粒蛋白质递送系统,其累积大小为383 +/- 11.5nm,ζ电位表面电荷为44.61 +/- 3.31mV。该系统提供了许多用于包封的隔室,包括水核和聚电解质壳内部,证明了体外模型蛋白,牛血清白蛋白的良好捕获和持续线性释放。我们的结果表明,该递送系统具有延长的保质期,可以在给药前立即装载,从而防止了蛋白质的任何损失。

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