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负载多酚组成的仿生胶束的环保水凝胶用于白藜芦醇和芦丁的局部给药

Eco-Friendly Hydrogels Loading Polyphenols-Composed Biomimetic Micelles for Topical Administration of Resveratrol and Rutin.

作者信息

Guedes Beatriz N, Andreani Tatiana, Oliveira M Beatriz P P, Fathi Faezeh, Souto Eliana B

机构信息

Laboratory of Pharmaceutical Technology, Faculty of Pharmacy, University of Porto, 4050-313 Porto, Portugal.

GreenUPorto-Sustainable Agrifood Production Research Centre, INOV4AGRO, Biology Department, Faculty of Sciences of University of Porto, Rua do Campo Alegre s/n, 4169-007 Porto, Portugal.

出版信息

Biomimetics (Basel). 2024 Dec 27;10(1):8. doi: 10.3390/biomimetics10010008.

Abstract

In this study, we describe the development of hydrogel formulations composed of micelles loading two natural antioxidants-resveratrol and rutin-and the evaluation of the effect of a by-product on the rheological and textural properties of the developed semi-solids. This approach aims to associate the advantages of hydrogels for topical administration of drugs and of lipid micelles that mimic skin composition for the delivery of poorly water-soluble compounds in combination therapy. Biomimetic micelles composed of L-α-phosphatidylcholine loaded with two distinct polyphenols (one non-flavonoid and one flavonoid) were produced using hot shear homogenisation followed by the ultrasonication method. All developed micelles were dispersed in a carbomer 940-based hydrogel to obtain three distinct semi-solid formulations, which were then characterised by analysing the thermal, rheological and textural properties. Olive pomace-based hydrogels were also produced to contain the same micelles as an alternative to respond to the needs of zero waste and circular economy. The thermograms showed no changes in the typical profiles of micelles when loaded into the hydrogels. The rheological analysis confirmed that the produced hydrogels achieved the ideal properties of a semi-solid product for topical administration. The viscosity values of the hydrogels loaded with olive pomace (hydrogels A) proved to be lower than the hydrogels without olive pomace (hydrogels B), with this ingredient having a considerable effect in reducing the viscosity of the final formulation, yet without compromising the firmness and cohesiveness of the gels. The texture analysis of both hydrogels A and B also exhibited the typical behaviour expected of a semi-solid system.

摘要

在本研究中,我们描述了由负载两种天然抗氧化剂(白藜芦醇和芦丁)的胶束组成的水凝胶配方的开发,以及一种副产物对所开发半固体的流变学和质地特性的影响评估。这种方法旨在结合水凝胶用于药物局部给药的优势和脂质胶束模仿皮肤成分以在联合治疗中递送难溶性化合物的优势。使用热剪切均质化随后超声处理方法制备了由负载两种不同多酚(一种非黄酮类和一种黄酮类)的L-α-磷脂酰胆碱组成的仿生胶束。将所有开发的胶束分散在基于卡波姆940的水凝胶中,以获得三种不同的半固体配方,然后通过分析热、流变学和质地特性对其进行表征。还制备了基于橄榄果渣的水凝胶,以包含相同的胶束,作为响应零废物和循环经济需求的替代方案。热重曲线表明,当胶束负载到水凝胶中时,其典型曲线没有变化。流变学分析证实,所制备的水凝胶达到了用于局部给药的半固体产品的理想特性。负载橄榄果渣的水凝胶(水凝胶A)的粘度值被证明低于不含橄榄果渣的水凝胶(水凝胶B),这种成分在降低最终配方的粘度方面具有相当大的作用,但不影响凝胶的硬度和内聚性。水凝胶A和B的质地分析也表现出半固体系统预期的典型行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0649/11762386/baca45bc6e55/biomimetics-10-00008-g001.jpg

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