Department of Pharmaceutics & Pharmaceutical Technology, Pharos University in Alexandria, Alexandria, Egypt.
Department of Pharmaceutics, Alexandria University, Alexandria, Egypt.
Drug Deliv. 2021 Dec;28(1):1188-1203. doi: 10.1080/10717544.2021.1937383.
Studies have shown the use of non-steroidal anti-inflammatory drugs, such as ibuprofen could reduce the risk of Alzheimer's disease. The drug-repurposing strategy offers a bright opportunity for these patients. Intranasal administration through the olfactory pathway provides noninvasive and direct drug delivery to the target brain. A novel ibuprofen microemulsion was prepared, characterized and assessed the brain uptake in rats. The solubility of ibuprofen in various oils, surfactants, co-surfactants, and different ratios of surfactant/co-surfactant mixtures was screened and the phase diagrams were constructed. The colloidal particle size was 166.3 ± 2.55 nm and the zeta potential was -22.7 mV. Conductivity and dilution test identified an O/W type microemulsion with pH 4.09 ± 0.08. The rheological study showed a Newtonian flow behavior with cP 10.633 ± 0.603 (mPa⋅s). A steady drug release and linear permeation profiles were observed and showed a 90% permeation rate from the released drug. Ibuprofen microemulsion showed excellent stability in 3-months accelerated storage conditions, heating-cooling and freeze-thaw cycles, accelerated centrifugation, and 6- and 12-months long-term storage conditions. studies in rats further demonstrated a 4-fold higher brain uptake of ibuprofen from the microemulsion compared to the reference solution and nearly 4-fold and 10-fold higher compared to the intravenous and oral administrations. This study provides an exciting repurposing strategy and new administration route for the treatment of Alzheimer's disease.
研究表明,使用非甾体抗炎药,如布洛芬,可以降低患老年痴呆症的风险。药物再利用策略为这些患者提供了一个光明的机会。通过嗅觉途径进行鼻腔内给药,为目标大脑提供了非侵入性和直接的药物输送。本研究制备了一种新型布洛芬微乳,并对其进行了特征描述和在大鼠中的脑内摄取评估。筛选了布洛芬在各种油、表面活性剂、助表面活性剂和不同表面活性剂/助表面活性剂比例混合物中的溶解度,并构建了相图。胶束粒径为 166.3±2.55nm,zeta 电位为-22.7mV。电导率和稀释试验确定了一种 pH 值为 4.09±0.08 的 O/W 型微乳。流变学研究表明具有牛顿流行为,cP 为 10.633±0.603(mPa·s)。观察到稳定的药物释放和线性渗透曲线,表明从释放的药物中观察到 90%的渗透速率。布洛芬微乳在 3 个月的加速储存条件、加热-冷却和冻融循环、加速离心以及 6 个月和 12 个月的长期储存条件下表现出优异的稳定性。在大鼠中的研究进一步表明,与参比溶液相比,布洛芬微乳的脑摄取量增加了 4 倍,与静脉和口服给药相比,增加了近 4 倍和 10 倍。这项研究为治疗老年痴呆症提供了一个令人兴奋的药物再利用策略和新的给药途径。