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载壳聚糖纳米囊泡的曲酸的环保制备、表征、抗黑色素/抗氧化作用评价及其体外/体内安全性研究。

Eco-friendly preparation, characterization, evaluation of anti-melanogenesis/antioxidant effect and in vitro/in vivo safety profile of kojic acid loaded niosome as skin lightener preparation.

机构信息

Pharmaceutical Sciences Research Centre, Heamoglobinopathy Institute, Mazandaran University of Medical Sciences, Sari, Iran.

Department of Pharmaceutics, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.

出版信息

J Biomater Sci Polym Ed. 2023 Oct;34(14):1952-1980. doi: 10.1080/09205063.2023.2201817. Epub 2023 Apr 25.

Abstract

In the current study, an ultrasonic approach (as green method) was utilized to prepared kojic acid niosome (kojisome) which aimed to increase the dermal delivery and improving anti-melanogenesis properties. The study's findings demonstrated that increasing cholesterol enhanced the mean particle size from 68.333 ± 5.686 nm to 325.000 ± 15.099 nm and entrapment efficiency 0% to 39.341 ± 4.126% of the kojisome. Cholesterol may enhance the number and rigidity of bilayers that induced a size enhancement and entrapment efficiency. The skin permeability test revealed that kojisome gel had more kojic acid in dermal layers (437.563 ± 29.857 μg/cm or 16.624 ± 1.379%) than kojic acid plain gel (161.290 ± 14.812 μg/cm or 6.128 ± 0.672%). The niosome's lipophilicity allowed for gradual penetration, possibly due to better contact with the skin layers. Also, the extended-release behavior of improved kojisome exhibited high safety profile and low side effect in cytotoxicity assay, dermal irritation test, and Histo-pathological evaluation. Furthermore, optimum kojisome inhibited melanin formation (53.093 ± 2.985% at 1000 µM) higher than free kojic acid (62.383 ± 1.958%) significantly ( < 0.05). In addition, Kojisome 6 inhibited L-dopa auto-oxidation greater extent (94.806 ± 2.411%) than pure kojic acid solution (72.953 ± 2.728%). Kojisome by delivering and targeting large amount of kojic acid on specific site causes high efficacy in inhibition of melanin synthesis. The observations of this study revealed that the produced kojisome might be used as a potential nano-vehicle for kojic acid dermal administration, thereby opening up innovative options for the treatment of hyperpigmentation problems.

摘要

在本研究中,采用超声法(绿色方法)制备了曲酸囊泡(koji 囊泡),旨在增加曲酸的透皮传递并改善其抗黑色素生成特性。研究结果表明,增加胆固醇可将平均粒径从 68.333±5.686nm 增加到 325.000±15.099nm,包封效率从 0%增加到 39.341±4.126%。胆固醇可能会增加双层的数量和刚性,从而导致粒径增大和包封效率提高。皮肤渗透试验表明,koji 囊泡凝胶在真皮层中含有更多的曲酸(437.563±29.857μg/cm 或 16.624±1.379%),高于曲酸普通凝胶(161.290±14.812μg/cm 或 6.128±0.672%)。囊泡的亲脂性允许逐渐渗透,这可能是由于与皮肤层更好地接触。此外,在细胞毒性测定、皮肤刺激性试验和组织病理学评价中,具有改善的释放行为的延长释放 kojisome 表现出高安全性和低副作用。此外,最佳 kojisome 抑制黑色素形成(在 1000µM 时为 53.093±2.985%)的效果优于游离曲酸(62.383±1.958%),差异具有统计学意义( < 0.05)。此外,Kojisome 6 抑制 L-多巴自动氧化的程度(94.806±2.411%)高于纯曲酸溶液(72.953±2.728%)。Kojisome 通过在特定部位输送和靶向大量 kojic 酸,从而在抑制黑色素合成方面具有高效性。本研究的观察结果表明,所制备的 kojisome 可作为 kojic 酸经皮给药的潜在纳米载体,从而为治疗色素沉着问题提供了创新选择。

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