Department of Experimental Medicine, Section of Biotechnology, Medical Histology and Molecular Biology, Bioteknet Second University of Naples, Via L. De Crecchio 7, 80138 Naples, Italy.
Department of Experimental Medicine, Section of Biotechnology, Medical Histology and Molecular Biology, Bioteknet Second University of Naples, Via L. De Crecchio 7, 80138 Naples, Italy.
Carbohydr Polym. 2016 Nov 20;153:275-283. doi: 10.1016/j.carbpol.2016.07.106. Epub 2016 Jul 29.
Hyaluronan (HA) is frequently incorporated in eye drops to extend the pre-corneal residence time, due to its viscosifying and mucoadhesive properties. Hydrodynamic and rheological evaluations of commercial products are first accomplished revealing molecular weights varying from about 360 to about 1200kDa and viscosity values in the range 3.7-24.2mPa s. The latter suggest that most products could be optimized towards resistance to drainage from the ocular surface. Then, a study aiming to maximize the viscosity and mucoadhesiveness of HA-based preparations is performed. The effect of polymer chain length and concentration is investigated. For the whole range of molecular weights encountered in commercial products, the concentration maximizing performance is identified. Such concentration varies from 0.3 (wt%) for a 1100kDa HA up to 1.0 (wt%) for a 250kDa HA, which is 3-fold higher than the highest concentration on the market. The viscosity and mucoadhesion profiles of optimized formulations are superior than commercial products, especially under conditions simulating in vivo blinking. Thus longer retention on the corneal epithelium can be predicted. An enhanced capacity to protect corneal porcine epithelial cells from dehydration is also demonstrated in vitro. Overall, the results predict formulations with improved efficacy.
透明质酸(HA)由于其粘性和粘膜粘附特性,常被加入滴眼液中以延长前角膜停留时间。首先对商业产品进行流体动力学和流变学评估,揭示分子量在约 360 至约 1200kDa 之间变化,粘度值在 3.7-24.2mPa s 范围内。后者表明,大多数产品可以针对抵抗从眼表面排出进行优化。然后,进行了一项旨在最大化基于 HA 的制剂的粘度和粘膜粘附性的研究。研究了聚合物链长和浓度的影响。对于商业产品中遇到的整个分子量范围,确定了使性能最大化的浓度。对于分子量为 1100kDa 的 HA,这种浓度最高可达 0.3(wt%),而对于分子量为 250kDa 的 HA,这种浓度最高可达 1.0(wt%),是市场上最高浓度的 3 倍。优化配方的粘度和粘膜粘附性特征优于商业产品,尤其是在模拟体内眨眼的条件下。因此,可以预测角膜上皮上的停留时间更长。还在体外证明了增强保护猪角膜上皮细胞免受脱水的能力。总体而言,结果预测了具有改善功效的配方。