作为纳米结构平台在眼念珠菌病治疗中的显著封顶效应。

IF 6.5 2区 医学 Q1 PHARMACOLOGY & PHARMACY
Sadek Ahmed, Maha M Amin, Sarah Mohamed El-Korany, Sinar Sayed
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引用次数: 3

摘要

本研究的目的是制备和增强硝酸非替康唑(FTN)负载的olaminsomes的眼部靶向性,以改善药物角膜渗透和治疗念珠菌病。采用中心复合设计,采用乙醇注射法制备了油胺体。自变量为:span 80量(mg) (A)、油胺浓度(mg%) (B)、油酸:药比(C)。依赖响应为:包封率(EE %)、粒径(PS)、多分散指数(PDI)、ZP电位(ZP)和体外10h释药量(Q10h)。采用Design-Expert®软件进行数值优化,选择最优配方。根据最高的EE %、ZP(绝对值)和Q10h以及最低的PS和PDI来选择该配方。通过差示扫描量热法、透射电镜、傅里叶变换红外光谱、pH测定、储存效果、终端灭菌影响、最小抑制浓度检测和离体角膜渗透分析对最佳配方进行了进一步的体外表征。通过眼刺激试验、角膜耐受性试验、角膜摄取试验和药敏试验等多种体内实验,验证了最佳配方的安全性和抗真菌活性。最佳配方的最佳值(0.972)分别为EE%(84.24%)、PS (117.55 nm)、ZP (-74.85 mV)和Q10h(91.26%)。与FTN悬浮液(174.66µg/cm2和30.83%)相比,最佳配方具有增强角膜穿透行为(428.66µg/cm2)和增强抗真菌活性(56.13%)的眼耐受性。上述结果证实了olaminosomes能够增强硝酸芬康唑的角膜穿透性和抗真菌作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Pronounced capping effect of olaminosomes as nanostructured platforms in ocular candidiasis management.

Pronounced capping effect of olaminosomes as nanostructured platforms in ocular candidiasis management.

Pronounced capping effect of olaminosomes as nanostructured platforms in ocular candidiasis management.

Pronounced capping effect of olaminosomes as nanostructured platforms in ocular candidiasis management.

The aim of this study was to formulate and boost ocular targeting of Fenticonazole Nitrate (FTN)-loaded olaminosomes in order to improve drug corneal permeation and candidiasis treatment. Olaminosomes were formulated by ethanol injection technique applying a central composite design. The independent variables were: span 80 amount (mg) (A), oleylamine concentration (mg%) (B) and oleic acid: drug ratio (C). The dependent responses were: percent entrapment efficiency (EE %), particle size (PS), poly-dispersity index (PDI), zeta potential (ZP) and in vitro drug release after 10 hours (Q10h). Numerical optimization by Design-Expert® software was adopted to select the optimum formula. This formula was chosen based on highest EE %, ZP (as absolute value) and Q10h and lowest PS and PDI. The optimum formula was subjected to further in vitro characterization via Differential scanning calorimetry, Transmission electron microscopy, Fourier transform infrared spectroscopy, pH determination, effect of storage, influence of terminal sterilization, detection of Minimal Inhibitory Concentration and ex vivo corneal penetration analysis. Safety and antifungal activity of the optimum formula were tested through various in vivo studies like ocular irritancy, corneal tolerance, corneal uptake and susceptibility test. The optimum formula with the maximum desirability value (0.972) revealed EE% (84.24%), PS (117.55 nm), ZP (-74.85 mV) and Q10h (91.26%) respectively. The optimum formula demonstrated ocular tolerance with enhanced corneal penetration behavior (428.66 µg/cm2) and boosted antifungal activity (56.13%) compared to FTN suspension (174.66 µg/cm2 and 30.83%). The previous results ensured the ability of olaminosomes to enhance the corneal penetration and antifungal efficacy of Fenticonazole Nitrate.

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来源期刊
Drug Delivery
Drug Delivery 医学-药学
CiteScore
11.80
自引率
5.00%
发文量
250
审稿时长
3.3 months
期刊介绍: Drug Delivery is an open access journal serving the academic and industrial communities with peer reviewed coverage of basic research, development, and application principles of drug delivery and targeting at molecular, cellular, and higher levels. Topics covered include all delivery systems including oral, pulmonary, nasal, parenteral and transdermal, and modes of entry such as controlled release systems; microcapsules, liposomes, vesicles, and macromolecular conjugates; antibody targeting; protein/peptide delivery; DNA, oligonucleotide and siRNA delivery. Papers on drug dosage forms and their optimization will not be considered unless they directly relate to the original drug delivery issues. Published articles present original research and critical reviews.
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