Department of Pharmaceutical Sciences, University of Pisa, Via Bonanno 33, 56126 Pisa, Italy.
Carbohydr Polym. 2013 Jan 30;92(1):33-9. doi: 10.1016/j.carbpol.2012.09.029. Epub 2012 Sep 23.
Mucoadhesive polymeric nanoparticles intended for drug transport across the gastrointestinal mucosa were prepared from quaternary ammonium-chitosan conjugates synthesised from reduced-MW chitosan (32 kDa). Conjugates contained pendant moieties of 2-4 adjacent diethyl-dimethylene-ammonium groups substituted on repeating units (26-55%). Conjugates were thiolated via amide bonds with thioglycolic acid to yield products with thiol content in the 35-87 μmol/g range. Nanoparticles with mean size in the 270-370 nm range and positive zeta-potential (+3.7 to +12.5 mV) resulted from ionotropic gelation of the thiolated conjugates with de-polymerised hyaluronic acid (470 kDa). The nanoparticles were fairly stable in size and thiol content and showed a significant mucoadhesivity, matching and even exceeding that of the constituent polymers. Nanoparticles were internalised by endothelial progenitor cells in direct relation to their surface charge intensity. Nanoparticle uptake significantly improved cell viability and resistance to oxidation. The lyophilised nanoparticles were re-dispersible and could make a manageable formulation for oral use.
用于药物穿越胃肠道黏膜的黏膜黏附性聚合物纳米粒,由从低分子量壳聚糖(32 kDa)合成的季铵化壳聚糖缀合物制备而成。缀合物在重复单元上含有 2-4 个相邻的二乙基二亚甲基铵取代的侧基(26-55%)。通过酰胺键将缀合物硫醇化与巯基乙酸反应,得到巯基含量在 35-87 μmol/g 范围内的产物。通过对低分子量透明质酸(470 kDa)进行离子凝胶化,得到平均粒径在 270-370nm 范围内、带正zeta 电位(+3.7 至+12.5 mV)的纳米粒。纳米粒在粒径和巯基含量方面相当稳定,具有显著的黏膜黏附性,与组成聚合物的黏膜黏附性相匹配,甚至超过其黏膜黏附性。纳米粒通过内皮祖细胞的内吞作用与表面电荷强度直接相关。纳米粒的摄取显著提高了细胞活力和抗氧化能力。冻干纳米粒可再分散,可用于口服的可控制剂。