Design and optimization of metformin solid lipid microparticles for topical application

IF 1.8 3区 农林科学 Q3 FOOD SCIENCE & TECHNOLOGY European Journal of Lipid Science and Technology Pub Date : 2024-06-22 DOI:10.1002/ejlt.202300221
Daya Mancer, Farid Agouillal, Kamel Daoud
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Abstract

This study aimed to improve metformin skin administration by creating solid lipid microparticles (SLMs). To obtain optimal metformin delivery, SLMs were created using a double emulsion hot homogenization technique with a rotor-stator. The effects of the two surfactants and homogenization time on particle characteristics and performance were studied using Response Surface Methodology (RSM). Tween 60 concentration had the most significant effect on particle size. The simple effects of the studied factors did not significantly affect encapsulation efficiency. However, the interactions between these parameters influenced this response. Moreover, the particle size was affected more by the surfactant concentration. After optimizing the three factors, the results showed an optimum encapsulation efficiency of 82% and a particle size of 2 µm with a desirability of 0.915. The topical drug release profile of lipid microparticle suspensions is characterized by an early burst, followed by sustained drug release. The release of metformin from solid lipid particles followed the Higuchi release model, whereas it followed the Weibull model for release from the gel formulation. Based on the in vitro drug release results, we can conclude that the particles containing the drug are in the shape of a matrix.

Practical Applications: The SLM formulation produces a film on the cutaneous surface, retaining the active component in the skin's superficial layer. Furthermore, owing to their micron size, SLM increases the contact surface of the encapsulated drug with the stratum corneum, which might improve cutaneous delivery and provide sustained release of the drug.

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用于局部应用的二甲双胍固体脂质微颗粒的设计与优化
这项研究旨在通过制造固体脂质微颗粒(SLMs)来改善二甲双胍的皮肤给药。为了获得最佳的二甲双胍给药效果,研究人员使用转子-定子双乳液热均质技术制作了固体脂质微粒。采用响应面方法(RSM)研究了两种表面活性剂和均质时间对颗粒特性和性能的影响。吐温 60 浓度对粒度的影响最为显著。所研究因素的简单效应对封装效率没有显著影响。但是,这些参数之间的相互作用会影响这一反应。此外,粒度受表面活性剂浓度的影响更大。在对三个因素进行优化后,结果显示最佳封装效率为 82%,粒径为 2 µm,理想度为 0.915。脂质微颗粒悬浮液的局部药物释放特征是早期爆发,随后药物持续释放。二甲双胍从固体脂质微粒中的释放遵循 Higuchi 释放模型,而从凝胶制剂中的释放则遵循 Weibull 模型。根据体外药物释放结果,我们可以得出结论:含有药物的颗粒呈基质状:SLM配方能在皮肤表面形成一层薄膜,将活性成分保留在皮肤表层。此外,由于 SLM 的尺寸为微米级,它增加了封装药物与角质层的接触面,这可能会改善皮肤给药,并提供药物的持续释放。
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来源期刊
CiteScore
5.50
自引率
0.00%
发文量
101
审稿时长
6-16 weeks
期刊介绍: The European Journal of Lipid Science and Technology is a peer-reviewed journal publishing original research articles, reviews, and other contributions on lipid related topics in food science and technology, biomedical science including clinical and pre-clinical research, nutrition, animal science, plant and microbial lipids, (bio)chemistry, oleochemistry, biotechnology, processing, physical chemistry, and analytics including lipidomics. A major focus of the journal is the synthesis of health related topics with applied aspects. Following is a selection of subject areas which are of special interest to EJLST: Animal and plant products for healthier foods including strategic feeding and transgenic crops Authentication and analysis of foods for ensuring food quality and safety Bioavailability of PUFA and other nutrients Dietary lipids and minor compounds, their specific roles in food products and in nutrition Food technology and processing for safer and healthier products Functional foods and nutraceuticals Lipidomics Lipid structuring and formulations Oleochemistry, lipid-derived polymers and biomaterials Processes using lipid-modifying enzymes The scope is not restricted to these areas. Submissions on topics at the interface of basic research and applications are strongly encouraged. The journal is the official organ the European Federation for the Science and Technology of Lipids (Euro Fed Lipid).
期刊最新文献
Cover Picture: Eur. J. Lipid Sci. Technol. 11/2024 Editorial Board: Eur. J. Lipid Sci. Technol. 11/2024 Contents: Eur. J. Lipid Sci. Technol. 11/2024 One step beyond for CNSL-based plasticizers for PVC: Use of cardol Cover Picture: Eur. J. Lipid Sci. Technol. 10/2024
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