Md Shadab, Ali Mushir, Ali Rashid, Bhatnagar Aseem, Baboota Sanjula, Ali Javed
Department of Pharmaceutics, Dehradun Institute of Technology (DIT), Dehradun 248009, Uttarakhand, India.
Department of Pharmaceutics, Faculty of Pharmacy, Jamia Hamdard, New Delhi 110062, India.
Int J Biol Macromol. 2014 Jun;67:418-25. doi: 10.1016/j.ijbiomac.2014.03.022. Epub 2014 Apr 3.
The present study was to develop donepezil loaded nanosuspension for direct olfactory administration which reaches the brain and determining safety profile in Sprague-Dawley rats. Nanosuspension was prepared by ionic-crosslinking method. The developed nanosuspension was intranasally instilled into the nostrils of rats with the help of cannula (size 18/20) so that drug reached into the brain directly via nose to brain pathway. The nanosuspension had an average size of 150-200nm with a polydispersity index of 0.341. The donepezil concentration was estimated in the brain homogenate using HPLC method. The Cmax showed concentration of donepezil in brain and plasma as 7.2±0.86 and 82.8±5.42ng/ml, respectively, for drug suspension and concentration of donepezil in brain and plasma as 147.54±25.08 and 183.451±13.45ng/ml, respectively, for nanosuspension at same dose of 0.5mg/ml when administered intranasally (p<0.05). The in vivo safety evaluation studies showed that no mortality, hematological changes, body weight variations and toxicity in animals was observed, when nanosuspension was administered in different doses as compared to control group (normal saline). Donepezil loaded chitosan nanosuspension is a potential new delivery system for treatment of Alzheimer's disease, when transported via olfactory nasal pathway to the brain.
本研究旨在开发用于直接嗅觉给药的多奈哌齐纳米混悬液,该混悬液可到达大脑,并确定其在Sprague-Dawley大鼠中的安全性。纳米混悬液采用离子交联法制备。借助套管(18/20规格)将制备好的纳米混悬液经鼻滴入大鼠鼻孔,使药物通过鼻脑途径直接进入大脑。该纳米混悬液的平均粒径为150 - 200nm,多分散指数为0.341。采用高效液相色谱法测定脑匀浆中的多奈哌齐浓度。当以0.5mg/ml的相同剂量经鼻给药时,药物混悬液组脑和血浆中多奈哌齐的Cmax分别为7.2±0.86和82.8±5.42ng/ml,纳米混悬液组脑和血浆中多奈哌齐的Cmax分别为147.54±25.08和183.451±13.45ng/ml(p<0.05)。体内安全性评价研究表明,与对照组(生理盐水)相比,当以不同剂量给予纳米混悬液时,未观察到动物出现死亡、血液学变化、体重变化及毒性。载有多奈哌齐的壳聚糖纳米混悬液经嗅觉鼻途径转运至大脑时,是一种治疗阿尔茨海默病的潜在新型给药系统。