用于眼部局部给药的载伊曲康唑纳米结构脂质载体:优化与评价

Itraconazole loaded nano-structured lipid carrier for topical ocular delivery: Optimization and evaluation.

作者信息

Kumar Manish, Tiwari Abhishek, Asdaq Syed Mohammed Basheeruddin, Nair Anroop B, Bhatt Shailendra, Shinu Pottathil, Al Mouslem Abdulaziz K, Jacob Shery, Alamri Abdulhakeem S, Alsanie Walaa F, Alhomrani Majid, Tiwari Varsha, Devi Sheetal, Pathania Ajay, Sreeharsha Nagaraja

机构信息

M.M. College of Pharmacy, Maharishi Markandeshwar (Deemed to be University), Mullana-Ambala, Haryana 133207, India.

Department of Pharmacy, Devsthali Vidyapeeth College of Pharmacy, Lalpur, Rudrapur (Udham Singh Nagar), Uttrakhand 263148 India.

出版信息

Saudi J Biol Sci. 2022 Jan;29(1):1-10. doi: 10.1016/j.sjbs.2021.11.006. Epub 2021 Nov 12.

Abstract

BACKGROUND & OBJECTIVES: Low penetration efficiency and retention time are the main therapeutic concerns that make it difficult for most of the drugs to be delivered to the intraocular tissues. These challenging issues are often related to those drugs, which have low or poor solubility and low permeability. The goal of this study was designed to develop nanostructured lipid carriers (NLCs) loaded with itraconazole (ITZ) with the objective of enhancing topical ocular permeation and thereby improving clinical efficacy.

MATERIALS AND METHODS

ITZ-loaded NLCs were fabricated by a high-speed homogenization technique using surfactant (Poloxamer 407), and lipids (stearic acid and oleic acid). Optimization of formulations was performed by 3 level factorial design and the selected formulation (F6) was evaluated by differential scanning calorimetry and transmission electron microscopy. Antifungal activity was assessed by measuring the zone of inhibition and irritation potential using the HET-CAM test.

RESULTS

The independent variables (lipid ratio-X and percentage of emulsifier-X) have a positive impact on percentage entrapment efficiency (Y) and percentage release (Y) but have a negative impact on particle size (Y). Based on the better entrapment efficiency (94.65%), optimum particle size (150.67 nm), and percentage cumulative drug release (68.67%), batch F6 was selected for further evaluation. Electron microscopic images revealed that the prepared particles are spherical and have nano size. Antifungal studies demonstrated enhancement in the zone of inhibition by formulation F6 as compared to a commercial eye drop. The non-irritancy of optimized formulation (F6) was confirmed with a zero score.

INTERPRETATION & CONCLUSION: In summary, the optimized NLCs seem to be a potent carrier for the effective delivery of itraconazole in ocular therapy.

摘要

背景与目的

低渗透效率和保留时间是主要的治疗难题,使得大多数药物难以递送至眼内组织。这些具有挑战性的问题通常与那些溶解度低或差以及渗透性低的药物有关。本研究的目的是开发负载伊曲康唑(ITZ)的纳米结构脂质载体(NLC),以增强局部眼部渗透,从而提高临床疗效。

材料与方法

使用表面活性剂(泊洛沙姆407)和脂质(硬脂酸和油酸)通过高速均质技术制备负载ITZ的NLC。采用三水平析因设计对制剂进行优化,并通过差示扫描量热法和透射电子显微镜对所选制剂(F6)进行评估。通过测量抑菌圈和使用鸡胚绒毛尿囊膜试验评估刺激潜力来评估抗真菌活性。

结果

自变量(脂质比例-X和乳化剂百分比-X)对包封率百分比(Y)和释放百分比(Y)有积极影响,但对粒径(Y)有负面影响。基于较好的包封率(94.65%)、最佳粒径(150.67nm)和药物累积释放百分比(68.67%),选择批次F6进行进一步评估。电子显微镜图像显示制备的颗粒呈球形且具有纳米尺寸。抗真菌研究表明,与市售滴眼液相比,制剂F6的抑菌圈有所增强。优化制剂(F6)的无刺激性通过零评分得到证实。

解读与结论

总之,优化后的NLC似乎是伊曲康唑在眼部治疗中有效递送的有效载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/863e/8717166/aa0510944941/gr1.jpg

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