Hiremath Praveen S, Saha Ranendra N
Pharmacy Group, Birla Institute of Technology and Science, Pilani, Rajasthan, India.
AAPS PharmSciTech. 2008;9(4):1171-8. doi: 10.1208/s12249-008-9159-0. Epub 2008 Nov 19.
The aim of the present investigation was to develop oral controlled release matrix tablet formulations of isoniazid using hydroxypropyl methylcellulose (HPMC) as a hydrophilic release retardant polymer and to study the influence of various formulation factors like proportion of the polymer, polymer viscosity grade, compression force, and release media on the in vitro release characteristics of the drug. The formulations were developed using wet granulation technology. The in vitro release studies were performed using US Pharmacopoeia type 1 apparatus (basket method) in 900 ml of pH 7.4 phosphate buffer at 100 rpm. The release kinetics was analyzed using Korsmeyer-Peppas model. The release profiles were also analyzed using statistical method (one-way analysis of variance) and f (2) metric values. The release profiles found to follow Higuchi's square root kinetics model irrespective of the polymer ratio and the viscosity grade used. The results in the present investigation confirm that the release rate of the drug from the HPMC matrices is highly influenced by the drug/HPMC ratio and viscosity grade of the HPMC. Also, the effect of compression force and release media was found to be significant on the release profiles of isoniazid from HPMC matrix tablets. The release mechanism was found to be anomalous non-Fickian diffusion in all the cases. In the present investigation, a series of controlled release formulations of isoniazid were developed with different release rates and duration so that these formulations could further be assessed from the in vivo bioavailability studies. The formulations were found to be stable and reproducible.
本研究的目的是开发以羟丙基甲基纤维素(HPMC)作为亲水性缓释聚合物的异烟肼口服控释骨架片制剂,并研究各种制剂因素,如聚合物比例、聚合物粘度等级、压片力和释放介质对药物体外释放特性的影响。采用湿法制粒技术制备制剂。体外释放研究使用美国药典1型装置(篮法),在900 ml pH 7.4的磷酸盐缓冲液中,转速为100 rpm。使用Korsmeyer-Peppas模型分析释放动力学。还使用统计方法(单向方差分析)和f(2) 度量值分析释放曲线。无论所用的聚合物比例和粘度等级如何,释放曲线均符合Higuchi平方根动力学模型。本研究结果证实,药物从HPMC骨架中的释放速率受药物/HPMC比例和HPMC粘度等级的高度影响。此外,发现压片力和释放介质对异烟肼从HPMC骨架片中的释放曲线有显著影响。在所有情况下,释放机制均为非菲克扩散。在本研究中,开发了一系列具有不同释放速率和持续时间的异烟肼控释制剂,以便可以通过体内生物利用度研究进一步评估这些制剂。这些制剂被发现是稳定且可重现的。