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首页> 外文期刊>International Journal of Pharmaceutics >Preparation and evaluation of agglomerated crystals by crystallo-co-agglomeration: an integrated approach of principal component analysis and Box-Behnken experimental design.
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Preparation and evaluation of agglomerated crystals by crystallo-co-agglomeration: an integrated approach of principal component analysis and Box-Behnken experimental design.

机译:晶体共凝聚的制备和凝聚晶体的评估:主成分分析和Box-Behnken实验设计的集成方法。

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摘要

Poor mechanical properties of crystalline drug particles require wet granulation technique for tablet production which is uneconomical, laborious, and tedious. The present investigation was aimed to improve flow and mechanical properties of racecadotril (RCD), a poorly water soluble antidiarrheal agent, by a crystallo-co-agglomeration (CCA) technique. The influence of various excipients and processing conditions on formation of directly compressible agglomerates of RCD was evaluated. Principal component analysis and Box-Behnken experimental design was implemented to optimize the agglomerates with good micromeritics and mechanical properties. The overall yield of the process was 88-98% with size of agglomerates between 351 and 1214 μm. Further, higher rotational speed reduced the size of agglomerates and disturbed sphericity. The optimized batch of agglomerates exhibited excellent flowability and crushing strength. The optimized batch of RCD agglomerates was characterized by fourier transform infrared spectroscopy, differential scanning calorimetry, powder X-ray diffractometry and gas chromatography which illustrated absence of drug-excipient interaction with minimal entrapment of residual solvent. Hence, it may be concluded that both excipients and processing conditions played a vital role to prepare spherical crystal agglomerates of RCD by CCA and it can be adopted as an excellent alternative to wet granulation.
机译:结晶药物颗粒的不良机械性能需要湿法制粒技术来生产片剂,这不经济,费力且繁琐。本研究旨在通过结晶共凝聚(CCA)技术改善难溶性止泻药消旋卡多曲(RCD)的流动性和机械性能。评估了各种赋形剂和加工条件对RCD可直接压缩的附聚物形成的影响。进行了主成分分析和Box-Behnken实验设计,以优化具有良好微细化和机械性能的团聚体。该方法的总产率为88-98%,附聚物的尺寸在351至1214μm之间。此外,较高的旋转速度减小了附聚物的尺寸并扰乱了球形度。优化的附聚物批料显示出优异的流动性和抗碎强度。通过傅立叶变换红外光谱法,差示扫描量热法,粉末X射线衍射法和气相色谱法对优化的RCD附聚物批料进行了表征,这说明没有药物-赋形剂相互作用,残留溶剂的截留量最小。因此,可以得出结论,无论是赋形剂还是加工条件都对通过CCA制备RCD球状晶体附聚物起着至关重要的作用,并且可以作为湿法制粒的绝佳替代品。

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