Ali Mohammad Sajid, Alam Mohammad Sarfaraz, Alam Nawazish, Anwer Tarique, Safhi Mohammed Mohsen A
College of Pharmacy, Jazan University, Jazan, KSA. ; Faculty of Pharmacy, Jamia Hamdard, New Delhi-62, India.
Faculty of Pharmacy, Jamia Hamdard, New Delhi-62, India.
Sci Pharm. 2013 Apr 7;81(4):1089-100. doi: 10.3797/scipharm.1210-02. Print 2013 Oct-Dec.
The physical and chemical degradation of drugs may result in altered therapeutic efficacy and even toxic effects. Therefore, the objective of this work was to study the stability of clobetasol propionate (CP) in a nanoemulsion. The nanoemulsion formulation containing CP was prepared by the spontaneous emulsification method. For the formulation of the nanoemulsion, Safsol, Tween 20, ethanol, and distilled water were used. The drug was incorporated into an oil phase in 0.05% w/v. The lipophilic nature of the drug led to the O/W nanoemulsion formulation. This was characterized by droplet size, pH, viscosity, conductivity, and refractive index. Stability studies were performed as per ICH guidelines for a period of three months. The shelf life of the nanoemulsion formulation was also determined after performing accelerated stability testing (40°C ± 2°C and 75% ± 5% RH). We also performed an intermediate stability study (30°C ± 2°C/65% RH ± 5% RH). It was found that the droplet size, conductivity, and refractive index were slightly increased, while the viscosity and pH slightly decreased at all storage conditions during the 3-month period. However, the changes in these parameters were not statistically significant (p≥0.05). The degradation (%) of the optimized nanoemulsion of CP was determined and the shelf life was found to be 2.18 years at room temperature. These studies confirmed that the physical and chemical stability of CP were enhanced in the nanoemulsion formulation.
药物的物理和化学降解可能会导致治疗效果改变甚至产生毒性作用。因此,本研究的目的是考察丙酸氯倍他索(CP)在纳米乳中的稳定性。采用自发乳化法制备了含CP的纳米乳制剂。制备纳米乳制剂时使用了Safsol、吐温20、乙醇和蒸馏水。药物以0.05% w/v的浓度加入油相中。药物的亲脂性导致了O/W纳米乳制剂的形成。通过粒径、pH值、粘度、电导率和折射率对其进行表征。按照ICH指南进行了为期三个月的稳定性研究。在进行加速稳定性试验(40°C ± 2°C和75% ± 5% RH)后,还测定了纳米乳制剂的货架期。我们还进行了中间稳定性研究(30°C ± 2°C/65% RH ± 5% RH)。结果发现,在3个月的储存期内,所有储存条件下的粒径、电导率和折射率均略有增加,而粘度和pH值略有下降。然而,这些参数的变化无统计学意义(p≥0.05)。测定了优化后的CP纳米乳的降解率(%),发现其在室温下的货架期为2.18年。这些研究证实,CP在纳米乳制剂中的物理和化学稳定性得到了提高。