Hägerström Helene, Edsman Katarina
Department of Pharmacy, Uppsala University, Uppsala Biomedical Centre, Box 580, SE 751 23 Uppsala, Sweden.
Eur J Pharm Sci. 2003 Apr;18(5):349-57. doi: 10.1016/s0928-0987(03)00037-x.
This work demonstrates several limitations of the simple rheological method that is widely used to investigate mucoadhesion of polymer gels. We establish the importance of the choice of conditions and the synergism parameter for the results obtained in comparative studies. Dynamic rheological measurements were performed on gels based on four slightly different poly(acrylic acid) (Carbopol) polymers and their corresponding mixtures with porcine stomach mucin and bovine submaxillary gland mucin. The rationale for the comparison of the polymers had a large influence on the results obtained. The method does not give the same ranking order when two different comparison strategies are used. Moreover, we show that the results obtained are also sensitive to where in the 'rheological range' the comparison is made, e.g., at which value of G'. Positive values of the synergism parameters are, for example, only seen with weak gels. The choice of synergism parameter also has a bearing on the results obtained, and here we suggest a new refined relative parameter, the log ratio (log(G'(mix)/G'(p))). We also investigated the adhesion of the gel preparations to porcine nasal mucosa, using tensile strength measurements. Increased gel strength resulted in stronger adhesion, which is in contrast to the results from the rheological method, where the positive values of the synergism parameters were seen only with weak gels. On the basis of the limitations demonstrated and discussed, we recommend that the rheological method should not be used as a stand-alone method for the studying of mucoadhesive properties of polymer gels.
这项工作展示了广泛用于研究聚合物凝胶粘膜粘附性的简单流变学方法的几个局限性。我们确立了在比较研究中条件选择和协同参数对所得结果的重要性。对基于四种略有不同的聚丙烯酸(卡波姆)聚合物及其与猪胃粘蛋白和牛下颌下腺粘蛋白的相应混合物的凝胶进行了动态流变学测量。聚合物比较的基本原理对所得结果有很大影响。当使用两种不同的比较策略时,该方法不会给出相同的排名顺序。此外,我们表明所得结果对在“流变范围”中的何处进行比较也很敏感,例如,在哪个G'值处。例如,协同参数的正值仅在弱凝胶中出现。协同参数的选择也对所得结果有影响,在此我们提出了一个新的精细相对参数,即对数比(log(G'(mix)/G'(p)))。我们还使用拉伸强度测量研究了凝胶制剂对猪鼻黏膜的粘附性。凝胶强度的增加导致更强的粘附性,这与流变学方法的结果相反,在流变学方法中,协同参数的正值仅在弱凝胶中出现。基于所展示和讨论的局限性,我们建议流变学方法不应作为研究聚合物凝胶粘膜粘附特性的独立方法。