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基于纳米囊泡的光防护制剂:一种安全性和有效性兼顾的方法。

Nanovesicle-based formulations for photoprotection: a safety and efficacy approach.

机构信息

Federal University of Rio de Janeiro, Institute of Macromolecules, Center of Technology, Ilha do Fundão, Rio de Janeiro, ZIP Code: 21945-970, Brazil.

出版信息

Nanotechnology. 2019 Aug 23;30(34):345102. doi: 10.1088/1361-6528/ab177c. Epub 2019 Apr 9.

Abstract

Vesicular nanosystems are versatile and they are able to encapsulate actives with different solubilities, such as lipophilic and hydrophilic compounds. The most well-known vesicular nanosystems are liposomes and niosomes, the last one is formed by non-ionic surfactants. In the present work, we developed photoprotective niosomes containing sunscreens (octyl methoxycinnamate, diethylamino hydroxybenzoyl hexyl benzoate and phenylbenzimidazole sulfonic acid), non-ionic surfactants, cholesterol and stearylamine (positive-charged lipid). Studies based on dynamic light scattering techniques, entrapment efficiency and morphology by transmission electron microscopy were performed to characterize the niosomes. In addition, rheology, pH, in vitro sun protection factor (SPF) efficacy and toxicity and in vivo and in vitro safety were determined for the niosome formulations F-N1 and F-N2. The mean sizes of N1 and N2 were 168 ± 5 nm and 192 ± 8 nm, respectively, and their morphologies were spherical, unilamellar and with an entrapment efficiency of more than 45% for each sunscreen. Both formulations, F-N1 and F-N2 presented characteristics of pseudoplastic non-Newtonian fluids, showing declining viscosity with increasing shear rate applied. SPF values were considered satisfactory, 34 ± 8 for formulation F-N1 and 34 ± 5 for F-N2. The formulations did not present toxicity when tested in macrophages and the pH was compatible with skin, which minimizes allergies. The in vitro safety assay showed lipophilic sunscreens greater affinity for the epidermis, since this layer contains natural lipids. In vivo safety assay suggests that the increased skin retention of N2 is directly correlated with the positive charge of stearylamine. Stable photoprotective niosomes were obtained and were shown to be promising nanostructures to be used against solar radiation.

摘要

囊泡纳米系统具有多功能性,能够包裹不同溶解度的活性物质,如亲脂性和亲水性化合物。最著名的囊泡纳米系统是脂质体和非离子囊泡,后者由非离子表面活性剂形成。在本工作中,我们开发了含有防晒霜(辛甲氧肉桂酸、二乙氨基羟基苯甲酰己基苯甲酸酯和苯并咪唑磺酸)、非离子表面活性剂、胆固醇和硬脂胺(正电荷脂质)的光保护非离子囊泡。通过动态光散射技术、包封效率和透射电子显微镜形态学研究对非离子囊泡进行了表征。此外,还测定了非离子囊泡制剂 F-N1 和 F-N2 的流变学、pH 值、体外防晒因子(SPF)功效和毒性以及体内和体外安全性。N1 和 N2 的平均粒径分别为 168 ± 5nm 和 192 ± 8nm,其形态为球形、单层和每个防晒霜的包封效率均超过 45%。两种制剂 F-N1 和 F-N2 均表现出假塑性非牛顿流体的特性,表现为随着施加的剪切速率增加而粘度降低。SPF 值被认为是令人满意的,制剂 F-N1 为 34 ± 8,F-N2 为 34 ± 5。在巨噬细胞中测试时,制剂没有表现出毒性,并且 pH 值与皮肤相容,从而最大限度地减少过敏。体外安全性试验表明,亲脂性防晒霜对表皮具有更大的亲和力,因为表皮层含有天然脂质。体内安全性试验表明,N2 对皮肤的滞留增加与硬脂胺的正电荷直接相关。获得了稳定的光保护非离子囊泡,这些囊泡有望成为对抗太阳辐射的有前途的纳米结构。

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