首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >In vitro release modulation from crosslinked pellets for site-specific drug delivery to the gastrointestinal tract. I. Comparison of pH-responsive drug release and associated kinetics.
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In vitro release modulation from crosslinked pellets for site-specific drug delivery to the gastrointestinal tract. I. Comparison of pH-responsive drug release and associated kinetics.

机译:交联药丸的体外释放调节,用于将特定部位的药物递送至胃肠道。 I. pH响应药物释放和相关动力学的比较。

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Multiple unit dosage forms for oral delivery of bioactive agents offer many advantages over single unit products (e.g., site-specific delivery, predictable gastrointestinal transit time and less localized adverse effects). In view of such benefits, this paper investigates the crosslinking of sodium alginate, low methoxylated pectin and their novel binary mixture with calcium ions through ionotropic gelation to pelletize the model drug, diclofenac sodium, using "environmentally benign" solvents and processing techniques. Crosslinked pellets of the above polymers in 2% (w/v) aqueous calcium chloride solution were prepared and evaluated for their structural and release behavior. The average size of the different pellets was 1.3 mm and drug entrapment capacity was optimized by reducing the calcium chloride solution pH to 1.6. Three types of pellet formulations were subjected to dissolution studies using the USP 23 Apparatus 2 and 3 over a pH range simulating the human gastrointestinal tract. Negligible drug release occurred in pH 1-4. However, rate of drug release in pH 6.6 ranged from rapid to slow (i. e., 100% drug release in 4 to 10 h, respectively) but always in a controlled manner. Weight change/erosion studies and swelling measurements were used to provide experimental correlation of kinetic model analysis for each of the three pellet systems. From model fitting studies and statistical treatment, the modified Hopfenberg equation {Mt/M infinity =1-[1-k1(t-tL,min)]n} best described the release kinetics for calcium-pectinate pellets. The model assumes heterogeneous erosion with kinetic constant k1=k0/C0r0, in which k0 is the erosion rate constant, C0 is the uniform initial concentration of drug in the matrix, r0 is the initial radius and tL, min is the lag time. The n values of 1, 2 and 3 apply to a slab, cylinder and sphere, respectively. In addition, the exponential models, namely the Power Law (Mt/M infinity =k1tn) and its derivative containing the lag time [Mt/M infinity =k1(t-tL,min)n], employed in the statistical treatment of data provided n values of approximately 0.8-1 in the case of the calcium-alginate and calcium-alginate-pectinate release kinetics. It is concluded that the proper selection of rate-controlling polymers and their interactive potential for crosslinking is important, and will determine the overall size and shape of pellets, the duration and pattern of dissolution profiles, pH sensitivity, drug loading capacity and mechanism of drug release.
机译:用于口服递送生物活性剂的多种单位剂型相对于单一单位产品具有许多优势(例如,特定部位的递送,可预测的胃肠道转运时间和较少的局部不良反应)。考虑到这些好处,本文研究了藻酸钠,低甲氧基化果胶及其新型二元混合物与钙离子的离子交联凝胶化,以使用“环境友好”溶剂和加工技术将模型药物双氯芬酸钠制成颗粒。制备上述聚合物在2%(w / v)氯化钙水溶液中的交联粒料,并评估其结构和释放行为。不同小球的平均尺寸为1.3毫米,通过将氯化钙溶液的pH值降低至1.6,可以优化药物的包裹能力。使用USP 23仪器2和3在模拟人胃肠道的pH范围内对三种类型的颗粒制剂进行了溶出度研究。在pH 1-4中发生的药物释放可忽略不计。然而,在pH 6.6下药物释放的速率从快速到缓慢(即分别在4至10小时内100%释放),但是总是以受控的方式进行。重量变化/侵蚀研究和溶胀测量被用来为三个颗粒系统中的每一个提供动力学模型分析的实验相关性。通过模型拟合研究和统计处理,修改后的Hopfenberg方程{Mt / M infinity = 1- [1-k1(t-tL,min)] n}最能描述果胶酸钙颗粒的释放动力学。该模型假定动力学速度为k1 = k0 / C0r0的非均匀腐蚀,其中k0是腐蚀速率常数,C0是矩阵中药物的均匀初始浓度,r0是初始半径,tL,min是滞后时间。 1、2和3的n值分别适用于平板,圆柱体和球体。另外,在数据的统计处理中采用了指数模型,即幂律(Mt / M infinity = k1tn)及其包含滞后时间的导数[Mt / M infinity = k1(t-tL,min)n]。在海藻酸钙和海藻酸钙-果胶酸钙的释放动力学的情况下,n提供约0.8-1的n值。结论是,适当选择速率控制聚合物及其相互作用的交联潜力很重要,这将决定颗粒的总体大小和形状,溶出曲线的持续时间和方式,pH敏感性,载药量和药物作用机理发布。

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