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首页> 外文期刊>African Journal of Pharmacy and Pharmacology >Formulation and in vitro assessment of sustained release matrix tablets of atenolol containing Kollidon SR and carnauba wax
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Formulation and in vitro assessment of sustained release matrix tablets of atenolol containing Kollidon SR and carnauba wax

机译:包含Kollidon SR和巴西棕榈蜡的阿替洛尔缓释基质片剂的配制和体外评估

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摘要

The goal of this study was to evaluate the possibility of using Kollidon SR and carnauba wax in sustained release matrix tablets of atenolol obtained by direct compression. The compatibility between atenolol and excipients (microcrystalline cellulose, colloidal silicon dioxide, magnesium stearate, Kollidon SR, and carnauba wax) was demonstrated by differential scanning calorimetry. 100 mg atenolol tablets were prepared by direct compression, using varying amounts of Kollidon SR (20 or 40%) and carnauba wax (5 or 10%), according to a 22 factorial design, resulting in four formulations. The response studied was the dissolution efficiency in 8 h (DE%8 h). Dissolution tests were performed with the paddle method, 50 rpm, 900 ml phosphate buffer, pH 6.8, 37°C. The mathematical model derived from the experimental design indicated that concentrations of Kollidon SR and carnauba wax negatively affected the DE%8h, while the interaction between thereof had a positive effect. The Korsmeyer-Peppas kinetic model described the dissolution curves and evidenced that drug release occurred by Super Case II transport, mostly controlled by erosion of the matrix, for all formulations. In general, the mechanical strength of the tablets was satisfactory (except for one formulation, which had high friability). Our results indicated that matrices combining Kollidon SR and carnauba wax by direct compression are promising for the sustained release of atenolol.
机译:这项研究的目的是评估在通过直接压制获得的阿替洛尔缓释基质片剂中使用Kollidon SR和巴西棕榈蜡的可能性。通过差示扫描量热法证明了阿替洛尔与赋形剂(微晶纤维素,胶体二氧化硅,硬脂酸镁,Kollidon SR和巴西棕榈蜡)之间的相容性。根据22因子设计,使用不同量的Kollidon SR(20%或40%)和巴西棕榈蜡(5%或10%),通过直接压片制备100 mg阿替洛尔片,得到四种制剂。研究的响应是在8小时内的溶解效率(DE%8 h)。用桨法,50 rpm,900 ml磷酸盐缓冲液,pH 6.8、37°C​​进行溶解测试。从实验设计得出的数学模型表明,Kollidon SR和巴西棕榈蜡的浓度对DE%8h产生负面影响,而它们之间的相互作用具有积极作用。 Korsmeyer-Peppas动力学模型描述了溶出曲线,并证明了对于所有配方,药物释放都是通过Super Case II转运而发生的,大部分情况下受基质侵蚀的控制。通常,片剂的机械强度是令人满意的(一种制剂除外,其脆性高)。我们的结果表明,通过直接压制结合Kollidon SR和巴西棕榈蜡的基质有望持续释放阿替洛尔。

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