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推挽渗透泵用于碳酸锂零级释放:研制与体外特性研究。

Push-pull osmotic pump for zero order delivery of lithium carbonate: development and in vitro characterization.

机构信息

Department of Pharmaceutics, V. Patel PERD Centre, Thaltej, Ahmedabad, Gujarat, India.

出版信息

Pharm Dev Technol. 2012 May-Jun;17(3):375-82. doi: 10.3109/10837450.2010.542577. Epub 2011 Feb 2.

Abstract

Lithium carbonate, a drug with narrow therapeutic index, needs therapeutic drug monitoring and dose adjustment to maintain lithium level within the therapeutic window. Conventional formulations of lithium carbonate exhibit immediate drug release causing swing/fluctuations in the plasma concentration of lithium, consequently leading to unfavorable side-effects and make dose adjustment difficult. The push-pull osmotic pump has been developed for zero order delivery of lithium carbonate for a period of 24 h. The effect of various formulation variables on bilayer core tablet and its semi permeable coating along with orifice diameter have been investigated and optimized for desired drug release profile. Drug release was found to be inversely proportional to the membrane thickness but directly related to the amount of pore formers in the semipermeable membrane. Images from a scanning electron microscope confirmed the presence of pores in the semipermeable membrane which facilitated the required water penetration. No distortion or change in orifice shape was noticed prior to and after the dissolution study. Drug release from the developed formulation was found to be independent of pH, agitation intensity and agitation mode but depended on osmotic pressure of dissolution media.

摘要

碳酸锂是一种治疗指数较窄的药物,需要进行治疗药物监测和剂量调整,以维持锂的治疗水平在治疗窗内。碳酸锂的传统制剂表现出即刻药物释放,导致锂的血浆浓度出现波动,从而导致不良的副作用,并使剂量调整变得困难。推拉渗透泵已被开发用于在 24 小时内零级递送电碳酸锂。已经研究和优化了各种制剂变量对双层核心片剂及其半渗透膜以及孔口直径的影响,以获得所需的药物释放曲线。药物释放与膜厚度成反比,但与半渗透膜中的成孔剂的量直接相关。扫描电子显微镜的图像证实了半渗透膜中存在的孔,这有助于所需的水分渗透。在溶解研究之前和之后,都没有注意到孔口形状的变形或变化。从开发的制剂中释放的药物释放与 pH、搅拌强度和搅拌模式无关,但取决于溶解介质的渗透压。

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