Fonseca Francisco N, Betti Andresa H, Carvalho Flávia C, Gremião Maria P D, Dimer Frantiescoli A, Guterres Sílvia S, Tebaldi Marli L, Rates Stela M K, Pohlmann Adriana R
J Biomed Nanotechnol. 2015 Aug;11(8):1472-81. doi: 10.1166/jbn.2015.2078.
Nose-to-brain drug delivery has been proposed to overcome the low absorption of drugs in central nervous system due to the absence of brain-blood barrier in the olfactory nerve pathway. However, the presence of a mucus layer and quick clearance limit the use of this route. Herein, amphiphilic methacrylic copolymer-functionalized poly(ε-caprolactone) nanocapsules were proposed as a mucoadhesive system to deliver olanzapine after intranasal administration. In vitro evaluations showed that these nanocapsules were able to interact with mucin (up to 17% of increment in particle size and 30% of reduction of particle concentration) and nasal mucosa (2-fold higher force for detaching), as well as to increase the retention of olanzapine (about 40%) on the nasal mucosa after continuous wash. The olanzapine-loaded amphiphilic methacrylic copolymer-functionalized PCL nanocapsules enhanced the amount of drug in the brain of rats (1.5-fold higher compared to the drug solution). In accordance with this finding, this formulation improved the prepulse inhibition impairment induced by apomorphine, which is considered as an operational measure of pre-attentive sensorimotor gating impairment present in schizophrenia. Besides, nanoencapsulated olanzapine did not affect the nasal mucosa integrity after repeated doses. These data evidenced that the designed nanocapsules are a promising mucoadhesive system for nose-to-brain delivery of drugs.
鼻-脑给药被认为可以克服由于嗅神经通路中缺乏血脑屏障而导致的中枢神经系统药物低吸收问题。然而,黏液层的存在和快速清除限制了该给药途径的应用。在此,两亲性甲基丙烯酸共聚物功能化聚(ε-己内酯)纳米胶囊被提出作为一种黏膜黏附系统,用于鼻内给药后递送奥氮平。体外评估表明,这些纳米胶囊能够与黏蛋白相互作用(粒径增加高达17%,颗粒浓度降低30%)以及与鼻黏膜相互作用(分离力提高2倍),并且在连续冲洗后能增加奥氮平在鼻黏膜上的保留率(约40%)。载有奥氮平的两亲性甲基丙烯酸共聚物功能化聚己内酯纳米胶囊提高了大鼠脑中的药物含量(与药物溶液相比高1.5倍)。根据这一发现,该制剂改善了阿扑吗啡诱导的前脉冲抑制损伤,这被认为是精神分裂症中存在的前注意感觉运动门控损伤的一种操作指标。此外,纳米包封的奥氮平在重复给药后不影响鼻黏膜的完整性。这些数据证明,所设计的纳米胶囊是一种有前景的用于鼻-脑药物递送的黏膜黏附系统。