Mortazavi S A, Smart J D
Drug Delivery Research Unit, School of Pharmacy and Biomedical Sciences, University of Portsmouth, UK.
J Pharm Pharmacol. 1994 Feb;46(2):86-90. doi: 10.1111/j.2042-7158.1994.tb03746.x.
Mechanical spectroscopy was used to examine some of the factors that may affect mucus gel strengthening: the effect of adding various concentrations of sodium chloride; mucoadhesive polymer molecular weight and its concentration; and the introduction of anionic, cationic and neutral polymers. A reduction in the storage modulus of the mucus/mucoadhesive mixture was observed with the introduction of sodium chloride. A poly(acrylic acid) with a molecular weight of 750 kDa gave the optimum mucus gel strengthening effect relative to other molecular weights. An anionic polymer was found to strengthen the mucus gel much more than a neutral or cationic polymer. It was proposed that the gel strengthening effect could be due to the formation of hydrogen bonded intermolecular complexes between the mucoadhesive and the mucus molecules. Furthermore, the complex formed is influenced by the ionic strength of the environment, and the molecular weight, nature and concentration of the mucoadhesive. In all cases the changes in the rheological properties of the mixes could be correlated directly to the strength of mucoadhesion reported in previous studies.
添加不同浓度氯化钠的影响;黏膜黏附聚合物的分子量及其浓度;以及引入阴离子、阳离子和中性聚合物的影响。随着氯化钠的引入,观察到黏液/黏膜黏附混合物的储能模量降低。相对于其他分子量,分子量为750 kDa的聚丙烯酸具有最佳的黏液凝胶强化效果。发现阴离子聚合物比中性或阳离子聚合物更能强化黏液凝胶。有人提出,凝胶强化作用可能是由于黏膜黏附剂与黏液分子之间形成了氢键结合的分子间复合物。此外,形成的复合物受环境离子强度、黏膜黏附剂的分子量、性质和浓度的影响。在所有情况下,混合物流变学特性的变化都可以直接与先前研究中报道的黏膜黏附强度相关联。