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首页> 外文期刊>Acta Poloniae Pharmaceutica: Durg Research >THE EFFECT OF CO-PROCESSED DRY BINDER WITH MICROCRYSTALLINE CELLULOSE ON RELEASE OF VERAPAMIL HYDROCHLORIDE FROM HYDROPHILIC MATRIX TABLETS
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THE EFFECT OF CO-PROCESSED DRY BINDER WITH MICROCRYSTALLINE CELLULOSE ON RELEASE OF VERAPAMIL HYDROCHLORIDE FROM HYDROPHILIC MATRIX TABLETS

机译:具有微晶纤维素的共加工干粘合剂对来自亲水基质片的盐酸盐盐酸盐释放的影响

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The aim of this study was to evaluate the use of co-processed dry binder MicroceLac~?100 (lactose and microcrystalline cellulose in ratio 3:1) and Comprecel~? 102 (pure microcrystalline cellulose) in formulations for the extended release of verapamil hydrochloride. Hydrophilic matrix tablets containing verapamil hydrochloride, hypromellose and dry binder were prepared by the direct compression method. Hypromelloses Methocel~(TM) K4M Premium CR or Methocel~(TM) K100M Premium CR were used as controlled release agents.Using scanning electron microscopy regular distribution of the active substance in the prepared tablets was confirmed. Release of verapamil hydrochloride from the prepared formulations was studied by the dissolution test method. The dissolution profiles were fitted to the first-order kinetic model, Higuchi diffusion model, Korsmeyer-Peppas and Weibull model and kinetic parameters as the first order release rate constant (k_1), release exponent (n) from Korsmeyer-Peppas model, Higuchi constant (K_H) and parameters of Weibull model (b, λ) were determined. Based on the results of non-linear regression analysis, the higher release rate constants were found for formulations containing co-processed dry binder MicroceLac~?100 in comparison with formulations containing pure microcrystalline cellulose (Comprecel~? 102). In addition, tablets swelling, erosion and disintegration during the dissolution test were monitored photographically.
机译:本研究的目的是评估使用共同加工的干粘合剂微胶囊〜〜100(比例3:1的乳糖和微晶纤维素)和包含〜〜? 102(纯微晶纤维素)用于延长释放维拉帕米尔盐酸盐的制剂。通过直接压缩方法制备含有维拉帕米甲酰胺,杂丁糖和干粘合剂的亲水基质片。用作控制释放剂,使用杂乳纤维素甲壳〜(TM)K4M优质Cr或Methocel〜(TM)K100M优质Cr.测量扫描电子显微镜经常分布在制备的片剂中的活性物质。通过溶出试验法研究了从制备的制剂中释放盐酸盐酰胺。溶出型材适用于一阶动力学模型,HIGUCHI扩散模型,Korsmeyer-Peppas和Weibull模型和动力学参数作为第一订单释放速率常数(K_1),来自Korsmeyer-Peppas模型的释放指数(n),Higuchi常数(K_H)确定了威布尔模型(B,λ)的参数。基于非线性回归分析的结果,与含有纯微晶纤维素(Compecel〜2)的制剂相比,含有共加工干粘合剂微胶囊〜100的制剂的较高释放速率常数。此外,在溶解试验期间的片剂溶胀,腐蚀和崩解的片剂被摄影。

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