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利用离子凝胶化增强百里香和金盏花油的海藻酸钠微胶囊化的治疗效果,用于控制药物释放。

Enhancing therapeutic effects alginate microencapsulation of thyme and calendula oils using ionic gelation for controlled drug delivery.

机构信息

Faculty of Engineering, Chemical Engineering Department, Ondokuz Mayıs University, Kurupelit Campus, Samsun, Turkey.

出版信息

J Biomater Sci Polym Ed. 2024 Dec;35(17):2611-2639. doi: 10.1080/09205063.2024.2386220. Epub 2024 Aug 18.

Abstract

This study focuses on encapsulating and characterizing essential oils such as thyme and calendula oils, which are known for their therapeutic properties but are limited in pharmaceutical formulations due to their low water solubility and instability, with alginate microspheres. Alginate presents an excellent option for microencapsulation due to its biocompatibility and biological degradability. The ionic gelation (IG) technique, based on the ionic binding between alginate and divalent cations, allows the formation of hydrogel materials with high water content, mechanical strength, and biocompatibility. The microspheres were characterized using FT-IR, SEM, and swelling analyses. After determining the encapsulation efficiency and drug loading capacity, the microspheres were subjected to dissolution studies under simulated digestion conditions. It was observed that the swelling percentage of the microspheres in simulated gastric fluid (SGF) ranged from ∼15% to 100%, while in simulated intestinal fluid (SIF) it ranged from ∼150% to 325%. Thyme oil, with low viscosity, exhibited higher encapsulation efficiency than marigold oil. The highest encapsulation efficiency was observed in A-TO-2 microspheres, while the highest drug loading capacity was observed in A-TO-5 microspheres. During the examination of the dissolution profiles of the microspheres, dissolution rates ranging from 10.98% to 23.56% in SGF and from 52.44% to 63.20% in SIF were observed.

摘要

本研究专注于包封和表征精油,如百里香和金盏花油,它们因其治疗特性而闻名,但由于其低水溶性和不稳定性,在药物制剂中受到限制,用海藻酸钠微球进行包封。海藻酸钠由于其生物相容性和生物可降解性,是微胶囊化的绝佳选择。基于海藻酸盐与二价阳离子之间的离子结合的离子凝胶(IG)技术,允许形成具有高含水量、机械强度和生物相容性的水凝胶材料。使用傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)和溶胀分析对微球进行了表征。在确定包封效率和载药量后,将微球在模拟消化条件下进行了溶解研究。观察到微球在模拟胃液(SGF)中的溶胀百分比范围为约 15%至 100%,而在模拟肠液(SIF)中的溶胀百分比范围为约 150%至 325%。粘度较低的百里香油表现出比金盏花油更高的包封效率。A-TO-2 微球的包封效率最高,而 A-TO-5 微球的载药量最高。在考察微球的溶解曲线时,在 SGF 中的溶解速率范围为 10.98%至 23.56%,在 SIF 中的溶解速率范围为 52.44%至 63.20%。

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