a Department of Pharmaceutics, Faculty of Pharmacy , King Abdulaziz University , Jeddah , Saudi Arabia.
b Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy , Beni-Suef University , Beni-Suef , Egypt.
Pharm Dev Technol. 2018 Apr;23(4):382-386. doi: 10.1080/10837450.2017.1312440. Epub 2017 Apr 12.
Owing to its limited aqueous solubility, Phytomenadione (vitamin K) undergoes a low bioavailability (50%) with a large inter-individual variability after oral administration. Therefore, the aim of this work was to incorporate vitamin K into nanostructure lipid carrier systems to improve its aqueous solubility and bioavailability. Phytomenadione was used as a liquid lipid; Precirol ATO5, and Compritol ATO were used as solid lipids; Labrasol and Cremophore EL as water soluble surfactants; Capryol 90 and Lauroglycol as lipid soluble surfactants. Eight formulas were prepared and characterized for their particle sizes, zeta potential, entrapment efficiencies, and drug release. Those formulas had particle sizes ranging from 25.4 to 68.3 nm. The best formula, consisting of 15% Phytomenadione, 45% Precirol ATO5, 30% Cremophore EL, and 10% Lauroglycol 90, was selected for stability study and characterized by the techniques mentioned above and scanning electron microscopy. It had the highest drug loading and an acceptable in vitro release profile (94.54% within 30 min). This formula was also chemically and physically stable, and it recorded a relative bioavailability of 645.5% in rabbits compared to the commercial conventional tablet. This formula could be a promising carrier regarding its ease of preparation, dosage form versatility and enhanced bioavailability.
由于其有限的水溶解度,植物甲萘醌(维生素 K)在口服后生物利用度低(50%),个体间差异很大。因此,本工作的目的是将维生素 K 纳入纳米结构脂质载体系统,以提高其水溶解度和生物利用度。植物甲萘醌用作液体脂质;Precirol ATO5 和 Compritol ATO 用作固体脂质;Labrasol 和 Cremophor EL 用作水溶性表面活性剂;Capryol 90 和 Lauroglycol 用作脂溶性表面活性剂。制备了 8 种配方并对其粒径、Zeta 电位、包封效率和药物释放进行了表征。这些配方的粒径范围为 25.4 至 68.3nm。最佳配方由 15%植物甲萘醌、45% Precirol ATO5、30% Cremophor EL 和 10% Lauroglycol 90 组成,用于稳定性研究,并通过上述技术和扫描电子显微镜进行了表征。它具有最高的药物载量和可接受的体外释放曲线(30 分钟内释放 94.54%)。该配方在化学和物理上也稳定,与商业常规片剂相比,在兔子体内的相对生物利用度为 645.5%。该配方具有易于制备、剂型多样化和增强生物利用度的特点,是一种有前途的载体。