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Self-built Supercritical CO2 Anti-solvent Unit Design Construction and Operation using Carbamazepine

机译:卡马西平自建超临界CO2反溶剂装置的设计施工和运行

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摘要

The purpose of this study was to design and build a supercritical CO2 anti-solvent (SAS) unit and use it to produce microparticles of the class II drug carbamazepine. The operation conditions of the constructed unit affected the carbamazepine yield. Optimal conditions were: organic solution flow rate of 0.15 mL/min, CO2 flow rate of 7.5 mL/min, pressure of 4,200 psi, over 3,000 s and at 33°C. The drug solid-state characteristics, morphology and size distribution were examined before and after processing using X-ray powder diffraction and differential scanning calorimetry, scanning electron microscopy and laser diffraction particle size analysis, respectively. The in vitro dissolution of the treated particles was investigated and compared to that of untreated particles. Results revealed a change in the crystalline structure of carbamazepine with different polymorphs co-existing under various operation conditions. Scanning electron micrographs showed a change in the crystalline habit from the prismatic into bundled whiskers, fibers and filaments. The volume weighted diameter was reduced from 209 to 29 μm. Furthermore, the SAS CO2 process yielded particles with significantly improved in vitro dissolution. Further research is needed to optimize the operation conditions of the self-built unit to maximize the production yield and produce a uniform polymorphic form of carbamazepine.
机译:这项研究的目的是设计和建造一个超临界CO2反溶剂(SAS)装置,并将其用于生产II类药物卡马西平的微粒。所建单元的操作条件影响了卡马西平的产量。最佳条件是:有机溶液流速为0.15 mL / min,CO2流速为7.5 mL / min,压力为4,200 psi,温度超过3,000 s,温度为33°C。使用X射线粉末衍射和差示扫描量热法,扫描电子显微镜和激光衍射粒度分析分别检查了加工前后的药物固态特性,形态和尺寸分布。研究了处理过的颗粒的体外溶出并将其与未处理过的颗粒进行了比较。结果表明,卡马西平的晶体结构发生了变化,在各种操作条件下均存在不同的多晶型物。扫描电子显微照片显示出晶习性从棱柱形变为成束的晶须,纤维和细丝。体积加权直径从209减小到29μm。此外,SAS CO2工艺产生的颗粒具有显着改善的体外溶出度。需要进一步研究以优化自建单元的操作条件,以最大程度地提高产量并生产出卡马西平均匀的多晶型物。

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