Shirsat Ajinath Eknath, Chitlange Sohan S
Department of Pharmacy, JJTU, Rajasthan, India.
Department of Quality Assurance, Padm. Dr. D. Y. Patil Institute of Pharmaceutical Science and Research, Pimpri, Pune, Maharashtra, India.
J Adv Pharm Technol Res. 2015 Jul-Sep;6(3):88-96. doi: 10.4103/2231-4040.157983.
The purpose of present study was to optimize rizatriptan (RZT) chitosan (CS) nanoparticles using ionic gelation method by application of quality by design (QbD) approach. Based on risk assessment, effect of three variables, that is CS %, tripolyphosphate % and stirring speed were studied on critical quality attributes (CQAs); particle size and entrapment efficiency. Central composite design (CCD) was implemented for design of experimentation with 20 runs. RZT CS nanoparticles were characterized for particle size, polydispersity index, entrapment efficiency, in-vitro release study, differential scanning calorimetric, X-ray diffraction, scanning electron microscopy (SEM). Based on QbD approach, design space (DS) was optimized with a combination of selected variables with entrapment efficiency > 50% w/w and a particle size between 400 and 600 nm. Validation of model was performed with 3 representative formulations from DS for which standard error of - 0.70-3.29 was observed between experimental and predicted values. In-vitro drug release followed initial burst release 20.26 ± 2.34% in 3-4 h with sustained drug release of 98.43 ± 2.45% in 60 h. Lower magnitude of standard error for CQAs confirms the validation of selected CCD model for optimization of RZT CS nanoparticles. In-vitro drug release followed dual mechanism via, diffusion and polymer erosion. RZT CS nanoparticles were prepared successfully using QbD approach with the understanding of the high risk process and formulation parameters involved and optimized DS with a multifactorial combination of critical parameters to obtain predetermined RZT loaded CS nanoparticle specifications.
本研究的目的是通过应用质量源于设计(QbD)方法,采用离子凝胶法优化利扎曲普坦(RZT)壳聚糖(CS)纳米粒。基于风险评估,研究了三个变量,即CS%、三聚磷酸钠%和搅拌速度对关键质量属性(CQAs)的影响;粒径和包封率。采用中心复合设计(CCD)进行实验设计,共进行20次运行。对RZT CS纳米粒进行了粒径、多分散指数、包封率、体外释放研究、差示扫描量热法、X射线衍射、扫描电子显微镜(SEM)表征。基于QbD方法,通过选择变量的组合优化设计空间(DS),使包封率>50% w/w,粒径在400至600 nm之间。用来自DS的3种代表性制剂对模型进行验证,实验值和预测值之间的标准误差为-0.70-3.29。体外药物释放呈现初始突释,在3-4小时内为20.26±2.34%,随后在60小时内持续药物释放为98.43±2.45%。CQAs的标准误差较小,证实了所选CCD模型对RZT CS纳米粒优化的有效性。体外药物释放遵循扩散和聚合物侵蚀的双重机制。通过了解所涉及的高风险过程和制剂参数,成功地采用QbD方法制备了RZT CS纳米粒,并通过关键参数的多因素组合优化了DS,以获得预定的载RZT CS纳米粒规格。