Terreni Eleonora, Chetoni Patrizia, Tampucci Silvia, Burgalassi Susi, Al-Kinani Ali Athab, Alany Raid G, Monti Daniela
Department of Pharmacy, University of Pisa, 56126 Pisa, Italy.
Inter-University Center for the Promotion of the 3Rs Principles in Teaching & Research (Centro 3R), 56126 Pisa, Italy.
Pharmaceutics. 2020 Mar 11;12(3):253. doi: 10.3390/pharmaceutics12030253.
The physiological protective mechanisms of the eye reduce the bioavailability of topically administered drugs above all for those with high molecular weight and /or lipophilic characteristics, such as Cyclosporine A (CyA). The combined strategy based on the association of nanomicelles and mucoadhesive polymer seems promising since a limited number of commercial products containing CyA have been recently approved. The scope of this investigation was the design of Assembling Surfactants-Mucoadhesive Polymer Nanomicelles (ASMP-Nano), based on a binary system of two surfactants in combination with hyaluronic acid, and their biopharmaceutical evaluation. The optimisation of the ASMP-Nano in term of the amount of surfactants, CyA-loading and size determined the selection of the clear and stable Nano1HAB-CyA formulation containing 0.105% / CyA loaded-nanomicelles with a size of 14.41 nm. The nanostructured system had a protective effect towards epithelial corneal cells with a cell viability of more than 80%. It interacted with cellular barriers favouring the uptake and the accumulation of CyA into the cells as evidenced by fluorescent probe distribution, by hindering CyA permeation through reconstituted corneal epithelial tissue. In pharmacokinetics study on rabbits, the nanomicellar carrier prolonged the CyA retention time in the precorneal area mainly in presence of hyaluronic acid (HA), a mucoadhesive polymer.
眼睛的生理保护机制降低了局部给药药物的生物利用度,尤其是对于那些具有高分子量和/或亲脂性特征的药物,如环孢素A(CyA)。基于纳米胶束与粘膜粘附聚合物结合的联合策略似乎很有前景,因为最近只有少数含CyA的商业产品获得批准。本研究的范围是设计基于两种表面活性剂与透明质酸组合的二元体系的组装表面活性剂-粘膜粘附聚合物纳米胶束(ASMP-Nano),并对其进行生物药剂学评价。对ASMP-Nano在表面活性剂用量、CyA载药量和粒径方面的优化确定了选择清澈稳定的Nano1HAB-CyA制剂,其含有0.105%/载有CyA的纳米胶束,粒径为14.41nm。该纳米结构系统对角膜上皮细胞具有保护作用,细胞活力超过80%。如荧光探针分布所示,它与细胞屏障相互作用,有利于CyA摄取并积累到细胞中,同时通过阻碍CyA透过重组角膜上皮组织渗透。在兔药代动力学研究中,纳米胶束载体延长了CyA在角膜前区的保留时间,主要是在存在粘膜粘附聚合物透明质酸(HA)的情况下。