洛伐他汀
集聚经济
结块
材料科学
化学工程
结晶
工艺工程
色谱法
化学
制浆造纸工业
复合材料
工程类
生物化学
胆固醇
作者
Cameron J. Brown,John McGinty,Muhammad T. Islam,Nazer Rajoub,Omid Arjmandi‐Tash,Sara Ottoboni,Muhid Shahid,Stephanie J. Urwin,Ye Seol Lee,Magdalene W. S. Chong,Foteini Papathanasiou,Aruna S. Prakash,Elke Prasad,Bronwyn Spence,Ján Šefčı́k,John Robertson,Rachel M. Smith,James D. Litster,C. Price,Alison Nordon
标识
DOI:10.1007/s12247-024-09815-z
摘要
Abstract Purpose This work seeks to improve the particle processability of needle-like lovastatin crystals and develop a small-footprint continuous MicroFactory for its production. Methods General conditions for optimal spherical agglomeration of lovastatin crystals and subsequent product isolation are developed, first as batch processes, and then transferred to continuous MicroFactory operation. Results Methyl isobutyl ketone is a suitable bridging liquid for the spherical agglomeration of lovastatin. Practical challenges including coupling unit operations and solvent systems; mismatched flow rates and inconsistent suspension solid loading were resolved. The successful continuous production of lovastatin spherical agglomerates (D 50 = 336 µm) was achieved. Spherical agglomeration increased the density of the bulk lovastatin powder and improved product flowability from poor to good, whilst maintaining lovastatin tablet performance. Conclusion A continuous, integrated MicroFactory for the crystallisation, spherical agglomeration, and filtration of lovastatin is presented with improved product particle processability. Up to 16,800 doses of lovastatin (60 mg) can be produced per day using a footprint of 23 m 2 .
科研通智能强力驱动
Strongly Powered by AbleSci AI