局部给药乳质体凝胶的研制与表征

IF 0.4
V. Chatur, S. Dhole
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引用次数: 0

摘要

露立康唑是一种新型咪唑类抗菌药物,用于治疗皮肤真菌感染。目前的治疗受到皮肤吸收极差和缓慢的限制,需要长期反复给药才能完全治愈这种疾病。由于具有降低毒性和改变药代动力学和生物利用度的潜力,纳米体在药物传递中变得至关重要。利用不同比例的非离子表面活性剂Span 40和胆固醇的薄膜水合工艺制备了Luliconazole niosomes,以增加不良的皮肤渗透并减少局部传统药物给药(CHO)的不良反应。确定Niosomal配方的常规粒径在3至6.5微米之间。Niosomal制剂FN3(1:1)对胆固醇和span40的包封率为88.56%。透射电镜(TEM)观察所得乳质体配方呈球形。在(1:1)胆固醇:Span 40的比例下,Niosomal制剂(FN3)在24 h后的释药率最高(79.87%)。此外,采用选定的Niosomal配方来创建局部凝胶,评估pH,粘度,涂抹性和离体研究。在离体研究中,乳质体凝胶在皮肤渗透性方面优于常规外用凝胶。这些结果表明,乳质体凝胶作为一种新型的纳米给药介质具有很高的应用潜力,可用于经皮给药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and Characterization of Niosomal Gel for Topical Delivery of Luliconazole
Luliconazole is a novel imidazole antibacterial candidate for treating fungal infections on the skin. Its current treatment is limited by extremely poor and sluggish skin absorption, necessitating long-term, repetitive dosing to cure the condition completely. Niosomes are becoming essential in medication delivery due to their potential to minimize toxicity and alter pharmacokinetics and bioavailability. Luliconazole niosomes were created utilizing a thin-film hydration process with varied ratios of non-ionic surfactants Span 40 and cholesterol to increase poor skin penetration and decrease adverse effects of topical traditional medication administration (CHO). The regular particle size of the Niosomal formulation was determined to be between 3 and 6.5 micrometers. The entrapment efficiency of the Niosomal formulation FN3 (1: 1) of cholesterol and Span 40 was excellent (88.56 percent). The Niosomal formulation was spherical using transmission electron microscopy (TEM). At (1: 1) cholesterol: Span 40 ratio, Niosomal formulation (FN3) showed a high proportion of drug release after 24 hours (79.87 percent). Furthermore, a chosen Niosomal formulation was employed to create a topical gel assessed in pH, viscosity, spreadability, and ex vivo research. In an ex vivo research, Niosomal gel outperformed regular topical gel in terms of skin permeability. These results showed that Niosomal gel has a high potential for use as a new, nanosized drug delivery medium for transdermal Luliconazole delivery.
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