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醋酸淀粉包衣控释多颗粒微丸:材料表征及关键制剂与工艺变量的确定

Controlled release multiparticulate beads coated with starch acetate: material characterization, and identification of critical formulation and process variables.

作者信息

Nutan Mohammad T H, Vaithiyalingam Sivakumar R, Khan Mansoor A

机构信息

Department of Pharmaceutical Sciences, Irma Lerma Rangel College of Pharmacy, Texas A&M University Health Science Center, Kingsville, TX, USA.

出版信息

Pharm Dev Technol. 2007;12(3):307-20. doi: 10.1080/10837450701247483.

Abstract

The objectives of the present investigation were to prepare and characterize starch acetate (SA) with high degree of substitution (dS) and to study its prospect as film-forming agent in a controlled-release multiparticulate drug delivery system. As a part of the development process by quality by design, the objectives also included identification of critical formulation and process variables that affect the release of a drug. SA, a relatively new polymer, was characterized because it showed good film-forming properties. SA with dS 2.9 was synthesized from corn starch by paste disruption technique. It was compared with the raw material, starch, by Fourier transform infrared spectroscopy, X-ray diffraction, and molecular mass analysis. Viscosity of SA solution increased logarithmically with the polymer concentration. At higher polymer concentrations (1.5-5.0%), the solutions showed pseudoplastic behavior. Among the plasticizers tested, triacetin and triethyl citrate yielded free films with acceptable mechanical properties. The glass transition temperature (Tg) of the films could be well controlled by these plasticizers. Unplasticized film showed a Tg of 31.8 degrees C. A trend was found that increase in triacetin concentration in SA films resulted in increase in permeability coefficient for tritiated water. Scanning electron microscopic photographs showed a clear and smooth plasticized film compared to rough unplasticized film. Dyphylline-loaded beads were coated with highly substituted SA to evaluate the main effects of the formulation and process variables on the release of the drug and to figure out the reliability of the screening design. A seven-factor, twelve-run Plackett-Burman screening design was used. The response variables were cumulative percent of drug released in 0.5, 1, 4, 8, and 12 hr. Quantitative evaluation of the design revealed that coating weight gain, plasticizer concentration, and post-drying temperature had greater influence on the drug release than the others. The main effects on drug release after 12 hr decreased in the following order: coating weight gain (-7.81), plasticizer concentration (4.96), postdrying temperature (-2.51), SA concentration (-0.80), inlet temperature (0.51), postdrying time (-0.31), and atomizing pressure (-0.28).

摘要

本研究的目的是制备并表征高取代度(dS)的醋酸淀粉(SA),并研究其在控释多颗粒药物递送系统中作为成膜剂的前景。作为质量源于设计开发过程的一部分,该目标还包括确定影响药物释放的关键制剂和工艺变量。SA是一种相对较新的聚合物,因其具有良好的成膜性能而被表征。通过糊化破坏技术由玉米淀粉合成了dS为2.9的SA。通过傅里叶变换红外光谱、X射线衍射和分子量分析将其与原料淀粉进行了比较。SA溶液的粘度随聚合物浓度呈对数增加。在较高聚合物浓度(1.5 - 5.0%)下,溶液表现出假塑性行为。在所测试的增塑剂中,三醋精和柠檬酸三乙酯得到了具有可接受机械性能的游离膜。这些增塑剂可以很好地控制膜的玻璃化转变温度(Tg)。未增塑的膜显示Tg为31.8℃。发现一个趋势,即SA膜中三醋精浓度的增加导致氚标记水的渗透系数增加。扫描电子显微镜照片显示,与粗糙的未增塑膜相比,增塑膜清晰且光滑。用高度取代的SA包衣载有二羟丙茶碱的微丸,以评估制剂和工艺变量对药物释放的主要影响,并确定筛选设计的可靠性。采用了七因素、十二次运行的Plackett - Burman筛选设计。响应变量为在0.5、1、4、8和12小时内释放的药物累积百分比。对该设计的定量评估表明,包衣增重、增塑剂浓度和干燥后温度对药物释放的影响比其他因素更大。12小时后对药物释放的主要影响按以下顺序降低:包衣增重(-7.81)、增塑剂浓度(4.96)、干燥后温度(-2.51)、SA浓度(-0.80)、进料温度(0.51)、干燥后时间(-0.31)和雾化压力(-0.28)。

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