用于治疗真菌感染的高效局部给药伊曲康唑纳米凝胶的制备与评估。

IF 3 Q2 PHARMACOLOGY & PHARMACY Therapeutic delivery Pub Date : 2024-03-01 Epub Date: 2024-01-29 DOI:10.4155/tde-2023-0062
Archana S Patil, Samradni S Chougale, Umashri Kokatanr, Sujay Hulyalkar, Ravindra D Hiremath, Veerkumar Japti, Rajashree Masareddy
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引用次数: 0

摘要

目的:由于伊曲康唑的生物利用度较低,其传统口服剂型的临床应用受到限制。本研究旨在开发用于局部给药的伊曲康唑纳米凝胶。方法:制备、优化纳米乳剂,并进一步将其加入凝胶中,评估其均匀性、pH 值、粘度、铺展性、体外药物释放和皮肤刺激性研究。结果:所有纳米凝胶配方在 10 小时内的药物释放率分别为 32.39%、39.75% 和 45.9%。动物皮肤刺激性研究表明,纳米凝胶无刺激性。结论事实证明,伊曲康唑纳米凝胶具有局部有效给药和提高生物利用率的潜力。
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Formulation and evaluation of itraconazole-loaded nanoemulgel for efficient topical delivery to treat fungal infections.

Aim: The clinical application of conventional oral dosage form of itraconazole is limited due to its poor bioavailability. The aim of the study was to develop nanoemulgel of Itraconazole for topical delivery. Method: Nanoemulsions were prepared, optimized and further incorporated into a gel and evaluated for homogeneity, pH, viscosity, spreadability, in vitro drug release and skin irritation studies. Results: Cumulative drug release from nanoemulsions was within the range of 37.24 to 47.63% at 10 h. Drug release % for all the nanoemulgel formulations at10 h was 32.39, 39.75 and 45.9% respectively. Nanoemulgel was non-irritant as demonstrated by skin irritation studies in animals. Conclusion: Itraconazole nanoemulgels were proved to be potential for effective topical delivery of drug with enhanced bioavailability.

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来源期刊
Therapeutic delivery
Therapeutic delivery PHARMACOLOGY & PHARMACY-
CiteScore
5.50
自引率
0.00%
发文量
25
期刊介绍: Delivering therapeutics in a way that is right for the patient - safe, painless, reliable, targeted, efficient and cost effective - is the fundamental aim of scientists working in this area. Correspondingly, this evolving field has already yielded a diversity of delivery methods, including injectors, controlled release formulations, drug eluting implants and transdermal patches. Rapid technological advances and the desire to improve the efficacy and safety profile of existing medications by specific targeting to the site of action, combined with the drive to improve patient compliance, continue to fuel rapid research progress. Furthermore, the emergence of cell-based therapeutics and biopharmaceuticals such as proteins, peptides and nucleotides presents scientists with new and exciting challenges for the application of therapeutic delivery science and technology. Successful delivery strategies increasingly rely upon collaboration across a diversity of fields, including biology, chemistry, pharmacology, nanotechnology, physiology, materials science and engineering. Therapeutic Delivery recognizes the importance of this diverse research platform and encourages the publication of articles that reflect the highly interdisciplinary nature of the field. In a highly competitive industry, Therapeutic Delivery provides the busy researcher with a forum for the rapid publication of original research and critical reviews of all the latest relevant and significant developments, and focuses on how the technological, pharmacological, clinical and physiological aspects come together to successfully deliver modern therapeutics to patients. The journal delivers this essential information in concise, at-a-glance article formats that are readily accessible to the full spectrum of therapeutic delivery researchers.
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