Department of Pharmaceutical Sciences, University of Pisa, Pisa, Italy.
Eur J Pharm Biopharm. 2010 Jun;75(2):194-9. doi: 10.1016/j.ejpb.2010.02.006. Epub 2010 Feb 18.
Previously, a quaternary ammonium (N(+))-chitosan (Ch) conjugate (N(+)(60)-Ch) characterized by short pendant chains, made of 1.7+/-0.1 adjacent diethyl-dimethylene-ammonium groups, substituted onto the primary amino group of the chitosan repeating units (degree of substitution, 59.2+/-4.5%) was used to synthesize a multifunctional non-cytotoxic thiomer (N(+)(60)-Ch-SH(5)), carrying 4.5+/-0.7% thiol-bearing 3-mercaptopropionamide besides quaternary ammonium groups. The present work was aimed at evaluating the potential of N(+)(60)-Ch-SH(5) and N(+)(60)-Ch as bioactive excipients for dexamethasone (DMS) eyedrops. The DMS permeability across excised rabbit cornea was enhanced over the control value by the thiomer and the parent polymer to about the same extent (3.8 vs. 4.1 times). The mean precorneal retention time and AUC in the aqueous of DMS instilled in rabbit eyes via eyedrops were enhanced by the thiomer (MRT=77.96+/-3.57 min, AUC=33.19+/-6.96 microg ml(-1) min) more than the parent polymer (MRT=65.74+/-4.91 min, AUC=21.48+/-3.81 microg ml(-1) min) over the control (MRT=5.07+/-0.25 min, AUC=6.25+/-0.65 microg ml(-1) min). The quaternary ammonium ions were responsible for both permeabilization of corneal epithelium and polymer adhesion to precorneal mucus, while the thiols increased the latter. This synergistic action is the basis of the higher thiomer bioactivity in vivo. A good ocular tolerability of the chitosan derivatives resulted from in vivo experiments.
先前,一种季铵(N(+))-壳聚糖(Ch)缀合物(N(+)(60)-Ch)具有短侧链,由 1.7+/-0.1 个相邻的二乙基二亚甲基铵基团组成,取代壳聚糖重复单元的伯氨基(取代度,59.2+/-4.5%),用于合成多功能非细胞毒性硫醚(N(+)(60)-Ch-SH(5)),除了季铵基团外,还携带 4.5+/-0.7% 带有巯基的 3-巯基丙酰胺。本工作旨在评估 N(+)(60)-Ch-SH(5)和 N(+)(60)-Ch 作为地塞米松(DMS)滴眼剂的生物活性赋形剂的潜力。硫醚和母体聚合物都使 DMS 通过离体兔角膜的渗透性比对照值增加了约相同的程度(3.8 倍对 4.1 倍)。通过滴眼剂滴注到兔眼的 DMS 的预角膜滞留时间和在水性介质中的 AUC 均通过硫醚(MRT=77.96+/-3.57 min,AUC=33.19+/-6.96 microg ml(-1) min)增强,超过母体聚合物(MRT=65.74+/-4.91 min,AUC=21.48+/-3.81 microg ml(-1) min)和对照(MRT=5.07+/-0.25 min,AUC=6.25+/-0.65 microg ml(-1) min)。季铵离子既负责角膜上皮的渗透化,又负责聚合物与预角膜粘液的粘附,而硫醇则增加了后者。这种协同作用是体内更高的硫醚生物活性的基础。体内实验表明壳聚糖衍生物具有良好的眼部耐受性。