Michailova V, Titeva S, Kotsilkova R, Krusteva E, Minkov E
Department of Pharmaceutical Technology, Faculty of Pharmacy, Medical University, 2 Dunav St., 1000, Sofia, Bulgaria.
Int J Pharm. 2000 Nov 19;209(1-2):45-56. doi: 10.1016/s0378-5173(00)00536-6.
The rheological oscillatory test parameters have been observed for highly concentrated hydroxypropylmethyl cellulose (HPMC), carboxymethylcellulose-sodium (NaCMC) and mixed HPMC/NaCMC hydrogels obtained by swelling of matrix tablets in 0.1 mol cm(-3) HCl and pH 6.8 phosphate buffer. The mechanical spectra of the gels have been analysed using theoretical models, i.e. a generalised Maxwell model and an adapted Maxwell model, both based on Ferry and Williams approximations. The relaxation time spectra as well as the parameters characteristic of linear viscoelastic behaviour have been calculated: zero shear viscosity (eta(0)), plateau moduli (G(N)(0), G(0)' and G(0)"), zero-relaxation time (tau(0)) and mean relaxation time (θ). The mechanical spectra of mixed HPMC/NaCMC hydrogels differ considerably from those of the pure ones, the type of the spectrum depending on the two polymers' ratios. In both media, the rheological models applied define the HPMC gels as homogeneous entangled networks, and those of NaCMC and mixed HPMC/NaCMC as heterogeneous physical gels. The relationship between the kinetic constants of water penetration and the mean relaxation times suggests that the molecular relaxation controls the water uptake velocity. With all the systems tested irrespective of pH of the aqueous phase, an inversely proportional dependence between the viscosity and the water penetration velocity has been noted. Since the degree of hydration is one of the factors determining the degree and velocity of drug release from the hydrogel matrices, the relation between the kinetic parameters of water penetration and the viscosity is a characteristic indicator for the gel structure, the degree of swelling and the drug release rate.
对高浓度羟丙基甲基纤维素(HPMC)、羧甲基纤维素钠(NaCMC)以及通过基质片剂在0.1 mol cm(-3) HCl和pH 6.8磷酸盐缓冲液中溶胀得到的混合HPMC/NaCMC水凝胶的流变振荡测试参数进行了观察。使用理论模型,即基于费里(Ferry)和威廉姆斯(Williams)近似的广义麦克斯韦模型和适配麦克斯韦模型,对凝胶的力学谱进行了分析。计算了弛豫时间谱以及线性粘弹性行为的特征参数:零剪切粘度(η(0))、平台模量(G(N)(0)、G(0)'和G(0)'')、零弛豫时间(τ(0))和平均弛豫时间(θ)。混合HPMC/NaCMC水凝胶的力学谱与纯凝胶的力学谱有很大不同,谱的类型取决于两种聚合物的比例。在两种介质中,所应用的流变模型将HPMC凝胶定义为均匀缠结网络,而将NaCMC和混合HPMC/NaCMC凝胶定义为非均匀物理凝胶。水渗透动力学常数与平均弛豫时间之间的关系表明,分子弛豫控制着水的吸收速度。在所测试的所有体系中,无论水相的pH值如何,都注意到粘度与水渗透速度之间呈反比关系。由于水合程度是决定药物从水凝胶基质中释放程度和速度的因素之一,水渗透动力学参数与粘度之间的关系是凝胶结构、溶胀程度和药物释放速率的特征指标。