Identification of Critical Factors Influencing the In-Vitro Dissolution o f Bicalutamide Tablets Prepared Using Madg Technique

N. Choudhary, Dipika Chavda, V. Thakkar, T. Gandhi
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Abstract

This study was aimed to utilize the Moisture Activated Dry Granulation (MADG) technique to formulate Bicalutamide tablet and identify critical factors influencing its dissolution. The Bicalutamide inclusion complex was formed using the kneading method. Aeroperl 300 was selected as an adsorbent, polyvinylpyrrolidone (PVP) K30 as a binder, Microcrystalline Cellulose (MCC) and Lactose Monohydrate (LMH) in1:1 ratio as fillers. Croscarmellose sodium (CCS) and neusilin were used as disintegrating agents, as they did not affect the disintegration time when hardness and compression force increased. Box Behnken experimental design was used to optimize formulations and was evaluated for pre and post-compression parameters. The optimized formulation was compared with the marketed and wet granulation formulation. In addition, the short term stability testing of the optimized batch was performed. The optimized inclusioncomplex of hydroxypropyl beta-cyclodextrin (HP-ß-CD) was selected based on a phase solubility study in 1:1 ratio with drug toimprove solubility. The optimized batch was prepared by MADG at granulator speed of 540rpm, using 4.30 % PVPK30, and 1.5 % Aeroperl 300. It showed a disintegration time of 208.33 sec.Percentage drug release was 95.02 % in 30 mins, and hardness 5.4 kg/cm2. The stability study results confirmed the stability of the tablets. The Bicalutamide tablet was successfully formulated using the MADG technique. The parameters affecting the in-vitro dissolution were identified and optimized, leading to better bioavailability. Keywords: Bicalutamide, Moisture Activated Dry Granulation technology (MADG), hydroxypropyl beta-cyclodextrin (HP-β-CD), Box Behnken design (BBD), Croscarmellose sodium
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Madg法制备比卡鲁胺片体外溶出度影响因素的研究
本研究旨在利用水分活化干燥造粒(MADG)技术制备比卡鲁胺片,并确定影响其溶出度的关键因素。采用揉制法制备比卡鲁胺包合物。以Aeroperl 300为吸附剂,聚乙烯吡咯烷酮(PVP) K30为粘结剂,微晶纤维素(MCC)和乳糖一水合物(LMH)按1:1的比例为填料。崩解剂选用交联棉糖钠(CCS)和纽丝蛋白,当硬度和压缩力增大时不影响崩解时间。采用Box Behnken实验设计优化配方,并对压缩前后参数进行评价。并将优化后的配方与市售的湿法造粒配方进行了比较。并对优化后的批料进行了短期稳定性试验。通过对羟丙基-环糊精包合物(HP-ß-CD)的物相溶解度研究,选择最佳包合物(HP-ß-CD)与药物以1:1的比例提高其溶解度。以4.30%的PVPK30和1.5%的Aeroperl 300为原料,在540rpm的造粒速度下,用MADG法制备了优化的批料。崩解时间208.33秒,30 min释药率95.02%,硬度5.4 kg/cm2。稳定性研究结果证实了片剂的稳定性。采用MADG法制备了比卡鲁胺片。确定并优化了影响其体外溶出度的参数,提高了其生物利用度。关键词:比卡鲁胺,湿活化干燥造粒技术(MADG),羟丙基-环糊精(HP-β-CD), Box Behnken设计(BBD),交联纤维素钠
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