尼美舒利口服分散片的直接压缩法制备及评价

None Rabindra Kumar Rokaya, None Kedar Prasad Sah, None Stuti Shrestha, None Reshma KC, None Sonam Thakur, None Nimesh Kumar Singh, None Chandrakala Sah
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引用次数: 0

摘要

根据生物制药分类系统(BCS),尼美舒利是一类具有低溶解度和高渗透性的II类药物。因此,它的溶出是药物吸收过程中的一个限制步骤,直接影响药物的生物利用度。尼美舒利口服分散片(ODTs)通过缩短崩解时间,提高溶出速度,使拒绝吞咽片剂的患者易于给药,克服了与溶出有关的问题。在本研究中,通过直接压缩法制备了不同配方的尼美舒利,以改变超崩解剂的浓度:交叉维酮、交叉卡蜜糖钠、淀粉乙醇酸钠以及其他赋形剂:PVP K-30、Aerosil、甘露醇和硬脂酸镁。考察了不同浓度的超崩解剂对尼美舒利ODT释放特性的影响。结果表明,与其他配方相比,10%交叉维酮与8.33% SSG的最佳组合为B4,分散时间为40秒,崩解时间为19.16秒,润湿时间为15秒。所有其他研究参数被发现对尼美舒利的所有ODT配方满意。结果表明,采用不同浓度的超崩解剂,采用直接加压法制备尼美舒利可成功制成口服分散片。优化后的批次可以进行实时和加速稳定性研究,以确定商业用途的保质期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulation and evaluation of oral dispersible tablet of nimesulide by direct compression method
Based on Biopharmaceutics Classification System (BCS), nimesulide is a class II drug, characterized by low solubility and high permeability. Thus, its dissolution represents a limiting step in the drug absorption process which directly affects the bioavailability of the drug. Oral Dispersible tablets (ODTs) of nimesulide overcome the problem related to dissolution by enhancing the rate of dissolution by decreasing the disintegration time and making it easy to administer to patients who refuse to swallow a tablet. In the present study, different formulations of nimesulide were prepared to vary the concentration of superdisintegrants: crospovidone, croscarmellose sodium, sodium starch glycolate along with other excipients: PVP K-30, Aerosil, Mannitol, and Magnesium stearate by direct compression method. Precompression and post-compression parameters were evaluated and also the effect of different concentrations of superdisintegrants on the release profile of Nimesulide ODT was studied. The final data revealed that a combination of 10% crospovidone and 8.33% SSG i.e. formulation B4 was found best combination with the lowest dispersion time of 40 seconds, lowest disintegration time of 19.16 seconds, and lowest wetting time of 15 seconds as compared to other formulations. All other studied parameters were found to be satisfactory for all ODT formulations for Nimesulide. It was concluded that Nimesulide can be successfully formulated as oral dispersible tablets using various superdisintegrants in different concentrations by direct compression method. The optimized batch can be subjected to real-time and accelerated stability studies to determine the shelf life for commercial use.
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