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两性霉素B和乳铁蛋白组合负载的PLGA-PEG-PEI纳米粒热敏水凝胶用于潜在根除眼部真菌感染的研究: 、 及 研究

Development of thermosensitive hydrogel of Amphotericin-B and Lactoferrin combination-loaded PLGA-PEG-PEI nanoparticles for potential eradication of ocular fungal infections: , and studies.

作者信息

Elhabal Sammar Fathy, Ghaffar Shrouk A, Hager Raghda, Elzohairy Nahla A, Khalifa Mohamed Mansour, Mohie Passant M, Gad Rania A, Omar Nasreen N, Elkomy Mohammed H, Khasawneh Mohammad Ahmad, Abdelaal Nashwa

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Modern University for Technology and Information (MTI), Mokattam, Cairo 11571, Egypt.

Tactical Medical Department, Caduceus Lane Healthcare, Alexandria 21532, Egypt.

出版信息

Int J Pharm X. 2023 Feb 28;5:100174. doi: 10.1016/j.ijpx.2023.100174. eCollection 2023 Dec.

Abstract

The most prevalent conditions among ocular surgery and COVID-19 patients are fungal eye infections, which may cause inflammation and dry eye, and may cause ocular morbidity. Amphotericin-B eye drops are commonly used in the treatment of ocular fungal infections. Lactoferrin is an iron-binding glycoprotein with broad-spectrum antimicrobial activity and is used for the treatment of dry eye, conjunctivitis, and ocular inflammation. However, poor aqueous stability and excessive nasolacrimal duct draining impede these agens' efficiency. The aim of this study was to examine the effect of Amphotericin-B, as an antifungal against , and , and Lactoferrin, as an anti-inflammatory and anti-dry eye, when -loaded in triblock polymers PLGA-PEG-PEI nanoparticles embedded in P188-P407 ophthalmic thermosensitive gel. The nanoparticles were prepared by a double emulsion solvent evaporation method. The optimized formula showed particle size (177.0 ± 0.3 nm), poly-dispersity index (0.011 ± 0.01), zeta-potential (31.9 ± 0.3 mV), and entrapment% (90.9 ± 0.5) with improved pharmacokinetic parameters and trans-corneal penetrability, compared with drug solution. Confocal laser scanning revealed valuable penetration of fluoro-labeled nanoparticles. Irritation tests (Draize Test), Atomic force microscopy, cell culture and animal tests including histopathological analysis revealed superiority of the nanoparticles in reducing signs of inflammation and eradication of fungal infection in rabbits, without causing any damage to rabbit eyeballs. The nanoparticles exhibited favorable pharmacodynamic features with sustained release profile, and is neither cytotoxic nor irritating or . The developed formulation might provide a new and safe nanotechnology for treating eye problems, like inflammation and fungal infections.

摘要

眼科手术患者和新冠肺炎患者中最常见的病症是眼部真菌感染,这可能会导致炎症和干眼症,并可能引发眼部疾病。两性霉素B滴眼液常用于治疗眼部真菌感染。乳铁蛋白是一种具有广谱抗菌活性的铁结合糖蛋白,用于治疗干眼症、结膜炎和眼部炎症。然而,其在眼内的稳定性差以及鼻泪管引流过多阻碍了这些药物的疗效。本研究的目的是考察负载于嵌入P188 - P407眼用热敏凝胶中的三嵌段聚合物PLGA - PEG - PEI纳米粒中的两性霉素B(作为抗真菌药物对抗 、 和 )和乳铁蛋白(作为抗炎和抗干眼药物)的效果。纳米粒通过双乳液溶剂蒸发法制备。优化后的配方显示粒径为(177.0 ± 0.3 nm),多分散指数为(0.011 ± 0.01),zeta电位为(31.9 ± 0.3 mV),包封率为(90.9 ± 0.5),与药物溶液相比,其药代动力学参数和角膜穿透性均有所改善。共聚焦激光扫描显示荧光标记纳米粒有良好的穿透性。刺激试验(Draize试验)、原子力显微镜、细胞培养以及包括组织病理学分析在内的动物试验表明,纳米粒在减轻家兔炎症迹象和根除真菌感染方面具有优越性,且不会对家兔眼球造成任何损伤。纳米粒具有良好的药效学特性,呈现缓释特征,且无细胞毒性、无刺激性 或 。所开发的制剂可能为治疗眼部问题,如炎症和真菌感染,提供一种新的安全的纳米技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0852/9992749/2423a6ab901b/ga1.jpg

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