Hosny Khaled M, Alhakamy Nabil A
Department of Pharmaceutics, Faculty of Pharmacy, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Center of Excellence for Drug Research and Pharmaceutical Industries, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Pharmaceutics. 2020 Dec 28;13(1):35. doi: 10.3390/pharmaceutics13010035.
On the basis of fungal involvement, rhinosinusitis is categorized into allergic, mycetoma, chronic, and acute invasive types. The aim of the current study was to evaluate the efficacy of an amphotericin gel in situ loaded with nanotransferosomes against , which causes allergic rhinosinusitis. A Box-Behnken design was utilized to study the interaction among the nanotransferosomes and optimize independent variables in formulating them, in order to match the prerequisites of selected responses. The optimal formulation was determined to be 300 mg/mL soybean lecithin, 200 mg/mL amphotericin B (AMP), and 150 mg/mL clove oil, resulting in a particle size of 155.09 nm, 84.30% entrapment efficacy (EE), inhibition zone of 16.0 mm, and 0.1197 mmol serum creatinine. The optimized batch was further prepared into an in situ gel and evaluated for various parameters. The optimized formulation released 79.25% AMP and enhanced permeation through the nasal membrane, while the other formulations did not achieve complete absorption. According to in vivo tests using rabbits as animal models, the optimized AMP-nanotransferosomal formulations (NT) in in situ gel result in a non-significant difference among the various kidney function parameters. In conclusion, nasal in situ gel loaded with AMP-clove oil nanotreansfersomes can act as a promising novel carrier that enhances antifungal activity and decreases AMP nephrotoxicity.
基于真菌累及情况,鼻窦炎可分为变应性、真菌瘤型、慢性和急性侵袭型。本研究的目的是评估负载纳米传递体的两性霉素原位凝胶对引起变应性鼻窦炎的疗效。采用Box-Behnken设计研究纳米传递体之间的相互作用,并优化其制备过程中的自变量,以符合所选响应的要求。确定最佳配方为300mg/mL大豆卵磷脂、200mg/mL两性霉素B(AMP)和150mg/mL丁香油,所得粒径为155.09nm,包封率(EE)为84.30%,抑菌圈为16.0mm,血清肌酐为0.1197mmol。将优化批次进一步制成原位凝胶,并对各种参数进行评估。优化后的配方释放了79.25%的AMP,并增强了其透过鼻黏膜的渗透,而其他配方未实现完全吸收。根据以兔为动物模型的体内试验,原位凝胶中优化后的AMP纳米传递体制剂(NT)在各种肾功能参数之间无显著差异。总之,负载AMP-丁香油纳米传递体的鼻腔原位凝胶可作为一种有前景的新型载体,增强抗真菌活性并降低AMP的肾毒性。