Department of Pharmacy, Kohat University of Science and Technology (KUST), Kohat, Pakistan.
PLoS One. 2021 Dec 9;16(12):e0261051. doi: 10.1371/journal.pone.0261051. eCollection 2021.
High shear wet granulation is commonly applied technique for commercial manufacturing of tablets. Granulation process for tablets manufacturing is generally optimized by hit and trial which involves preparation of granules under different processing parameters, compression of granules and evaluation of the resultant tablets; and adjustment is made in granulation process on the basis of characteristics of tablets. Objective of the study was to optimize the process of high shear wet granulation and prediction of characteristics of tablets on the basis of properties of granules. Atenolol granules were prepared by high shear wet granulation method, using aqueous solution of polyvinyl pyrrolidone (PVP k-30) as binder. Concentration of binder solution and granulation time were taken as process variables, both studied at three levels. Different combinations of process variables were determined by Design Expert software. Granules were evaluated for different parameters on the basis of SeDeM-ODT (Sediment Delivery Model-Oro Dispersible Tablets) expert system. Granules from all the trials were compressed using round (10.5 mm) flat faced punches at compression weight of 250 mg/tablet. Tablets were evaluated of different quality control parameters as per USP. Results showed that both the process variables had positive effect on mechanical strength of tablets and negative effect on disintegration and dissolution rate. Granule prepared with highest level of binder concentration (15%) and highest granulation time (60 sec) resulted in tablets with highest crushing strength (11.8 kg), specific crushing strength (0.328 kg/mm2), tensile strength (0.208 kg/mm2), lowest value of friability (0.19%) and highest disintegration time (10.9 min), as predicted from granules characteristics on the basis of SeDeM-ODT expert system. Drug release from Trial-13 (processed under highest level of both process parameters) was also lower than rest of the trials. It is concluded from the study that quality characteristics of tablets can be predicted from granules characteristics using SeDeM-ODT expert system. Furthermore, SeDeM-ODT expert system can also be used for optimization of the process of high shear wet granulation.
高剪切湿法制粒是常用于片剂商业制造的技术。通常通过反复试验来优化片剂制造的制粒工艺,该试验包括在不同的加工参数下制备颗粒、压缩颗粒并评估得到的片剂;并根据片剂的特性对制粒工艺进行调整。本研究的目的是优化高剪切湿法制粒工艺,并根据颗粒特性预测片剂的特性。采用高剪切湿法制粒法,以聚乙烯吡咯烷酮(PVP k-30)水溶液为粘合剂制备阿替洛尔颗粒。将粘合剂溶液的浓度和制粒时间作为工艺变量,在三个水平上进行研究。通过 Design Expert 软件确定不同的工艺变量组合。根据 SeDeM-ODT(Sediment Delivery Model-Oro Dispersible Tablets)专家系统,对颗粒的不同参数进行评价。所有试验的颗粒均在压缩重量为 250mg/片的情况下,使用圆形(10.5mm)平直面冲头进行压缩。根据 USP 对片剂进行不同的质量控制参数评价。结果表明,两种工艺变量均对片剂的机械强度有积极影响,对崩解和溶出速率有消极影响。用最高水平的粘合剂浓度(15%)和最高制粒时间(60 秒)制备的颗粒,得到的片剂具有最高的抗压强度(11.8kg)、特定抗压强度(0.328kg/mm2)、拉伸强度(0.208kg/mm2)、最低的脆碎度(0.19%)和最长的崩解时间(10.9 分钟),这是根据 SeDeM-ODT 专家系统从颗粒特性预测得到的。试验 13(在最高水平的两种工艺参数下加工)的药物释放也低于其他试验。从研究中得出结论,使用 SeDeM-ODT 专家系统可以从颗粒特性预测片剂的质量特性。此外,SeDeM-ODT 专家系统还可用于优化高剪切湿法制粒工艺。