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首页> 外文期刊>Nanotechnology >Novel alginate-based nanocarriers as a strategy to include high concentrations of hydrophobic compounds in hydrogels for topical application
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Novel alginate-based nanocarriers as a strategy to include high concentrations of hydrophobic compounds in hydrogels for topical application

机译:基于藻酸盐的新型纳米载体作为在局部应用的水凝胶中包括高浓度疏水化合物的策略

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The cutaneous penetration of hydrophobic active molecules is of foremost concern in the dermatology and cosmetic formulation fields. The poor solubility in water of those molecules limits their use in hydrophilic forms such as gels, which are favored by patients with chronic skin disease. The aim of this work is to design a novel nanocarrier of hydrophobic active molecules and to determine its potential as an ingredient of a topical form. The nanocarrier consists of an oily core surrounded by a protective shell of alginate, a natural polysaccharide isolated from brown algae. These calcium alginate-based nanocarriers (CaANCs) were prepared at room temperature and without the use of organic solvent by an accelerated nanoemulsification-polymer crosslinking method. The size (hydrodynamic diameter similar to 200 nm) and surface charge (zeta potential similar to-30 mV) of the CaANCs are both compatible with their application on skin. CaANCs loaded with a fluorescent label were stable in model hydrophilic galenic forms under different storage conditions. Curcumin was encapsulated in CaANCs with an efficiency of similar to 95%, fully retaining its antioxidant activity. The application of the curcumin-loaded CaANCs on excised human skin led to a significant accumulation of the active molecules in the upper layers of the skin, asserting the potential of these nanocarriers in active pharmaceutical and cosmetic ingredients topical delivery.
机译:疏水活性分子的皮肤渗透是皮肤病学和化妆品制剂领域中最重要的问题。这些分子在水中的溶解性差,限制了它们以亲水性形式使用,例如凝胶,这受到慢性皮肤病患者的青睐。这项工作的目的是设计一种疏水活性分子的新型纳米载体,并确定其作为局部形式成分的潜力。纳米载体由油性核心组成,该油性核心被藻酸盐的保护壳包围,藻酸盐是从褐藻中分离出来的天然多糖。这些藻酸钙基纳米载体(CaANC)是在室温下通过加速纳米乳化-聚合物交联方法制备的,无需使用有机溶剂。 CaANC的大小(流体动力学直径类似于200 nm)和表面电荷(ζ电位类似于30 mV)都与它们在皮肤上的应用兼容。载有荧光标记的CaANC在不同储存条件下均以模型亲水盖仑形式稳定。姜黄素被封装在CaANC中,效率接近95%,完全保留了其抗氧化活性。载有姜黄素的CaANCs在已切除的人类皮肤上的应用导致皮肤上层大量积聚了活性分子,从而证明了这些纳米载体在活性药物和化妆品成分局部递送中的潜力。

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