Abla Kawthar K, Domiati Souraya, El Majzoub Rania, Mehanna Mohammed M
Pharmaceutical Nanotechnology Research Lab, Faculty of Pharmacy, Beirut Arab University, Beirut P.O. Box 11-5020, Lebanon.
Department of Pharmacology and Therapeutics, Faculty of Pharmacy, Beirut Arab University, Beirut P.O. Box 11-5020, Lebanon.
Gels. 2023 Jun 15;9(6):491. doi: 10.3390/gels9060491.
Propranolol is the first-line drug for managing migraine attacks. D-limonene is a citrus oil known for its neuroprotective mechanism. Thus, the current work aims to design a thermo-responsive intranasal limonene-based microemulsion mucoadhesive nanogel to improve propranolol efficacy. Microemulsion was fabricated using limonene and Gelucire as the oily phase, Labrasol, Labrafil, and deionized water as the aqueous phase, and was characterized regarding its physicochemical features. The microemulsion was loaded in thermo-responsive nanogel and evaluated regarding its physical and chemical properties, in vitro release, and ex vivo permeability through sheep nasal tissues. Its safety profile was assessed via histopathological examination, and its capability to deliver propranolol effectively to rats' brains was examined using brain biodistribution analysis. Limonene-based microemulsion was of 133.7 ± 0.513 nm diametric size with unimodal size distribution and spheroidal shape. The nanogel showed ideal characteristics with good mucoadhesive properties and in vitro controlled release with 1.43-fold enhancement in ex vivo nasal permeability compared with the control gel. Furthermore, it displayed a safe profile as elucidated by the nasal histopathological features. The nanogel was able to improve propranolol brain availability with C 970.3 ± 43.94 ng/g significantly higher than the control group (277.7 ± 29.71 ng/g) and with 382.4 % relative central availability, which confirms its potential for migraine management.
普萘洛尔是治疗偏头痛发作的一线药物。D-柠檬烯是一种具有神经保护机制的柑橘油。因此,当前的工作旨在设计一种基于柠檬烯的热敏性鼻内微乳粘膜粘附纳米凝胶,以提高普萘洛尔的疗效。使用柠檬烯和Gelucire作为油相、Labrasol、Labrafil和去离子水作为水相制备微乳,并对其理化特性进行表征。将微乳负载到热敏性纳米凝胶中,并对其物理和化学性质、体外释放以及通过绵羊鼻组织的离体渗透性进行评估。通过组织病理学检查评估其安全性,并使用脑生物分布分析检查其将普萘洛尔有效递送至大鼠脑内的能力。基于柠檬烯的微乳直径大小为133.7±0.513nm,具有单峰尺寸分布和球形形状。与对照凝胶相比,纳米凝胶显示出理想的特性,具有良好的粘膜粘附性能和体外控释,离体鼻渗透率提高了1.43倍。此外,如鼻组织病理学特征所示,它显示出安全的特性。纳米凝胶能够提高普萘洛尔在脑内的可用性,C值为970.3±43.94ng/g,显著高于对照组(277.7±29.71ng/g),相对脑内可用性为382.4%,这证实了其在偏头痛治疗中的潜力。