Preparation of Ketoconazole-Loaded Nanoemulsions for Ophthalmic Delivery: Characterization and in-vitro Antifungal Activity Evaluation

IF 0.3 Q4 PHARMACOLOGY & PHARMACY
Mohammad Mehdi Mahboobian, Negin Azadi, Shabnam Pourmoslemi
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引用次数: 0

Abstract

Nanoemulsions (N.E.s) capable of ocular bioavailability elevation can be used for poor water-soluble drugs such as ketoconazole (K.Z.). The current investigation was designed for the purpose of overcoming this issue by developing K.Z. containing N.E.s for ophthalmic drug delivery with appropriate therapeutic efficiency. The preparation of ketoconazole N.E.s was performed by the low-energy technique. According to the phase diagram, three stable formulations were selected for more physicochemical analyses, including particle size, polydispersity index, pH, refractive index, osmolality, and viscosity. Finally, drug release patterns and in-vitro antifungal activity were assessed for the final selected formulation. The developed N.E. formulations with droplet sizes less than 20nm showed appropriate physicochemical characteristics for ocular delivery. The selected formulation released 100% of the encapsulated drug during 24 h. Moreover, antifungal assessments showed that prepared N.E. had acceptable in vitro antifungal activity. Based on our findings, it can be concluded that N.E.s could be applied as effective carriers for the ophthalmic delivery of ketoconazole.
酮康唑负载纳米眼科乳剂的制备、表征及体外抗菌活性评价
能够提高眼部生物利用度的纳米乳液(N.E.s)可用于水溶性差的药物,如酮康唑(K.Z.)。目前的研究旨在通过开发具有适当治疗效率的含K.Z.的N.E.s用于眼科药物递送来克服这一问题。酮康唑N.E.的制备采用低能耗技术。根据相图,选择了三种稳定的配方进行更多的物理化学分析,包括粒度、多分散指数、pH、折射率、渗透压和粘度。最后,对最终选择的制剂的药物释放模式和体外抗真菌活性进行了评估。所开发的液滴尺寸小于20nm的N.E.制剂显示出适合眼部递送的物理化学特性。所选制剂在24小时内释放出100%的包封药物。此外,抗真菌评估表明,制备的N.E.具有可接受的体外抗真菌活性。根据我们的研究结果,可以得出结论,N.E.可以作为酮康唑眼科给药的有效载体。
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来源期刊
Current Drug Therapy
Current Drug Therapy PHARMACOLOGY & PHARMACY-
CiteScore
1.30
自引率
0.00%
发文量
50
期刊介绍: Current Drug Therapy publishes frontier reviews of high quality on all the latest advances in drug therapy covering: new and existing drugs, therapies and medical devices. The journal is essential reading for all researchers and clinicians involved in drug therapy.
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