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应用改良切向喷雾流化床从初级晶体生产素丸。

Application of the Modified Tangential Spray-Fluidized Bed to Produce Nonpareils from Primary Crystals.

机构信息

GEA-NUS Pharmaceutical Processing Research Laboratory, Department of Pharmacy, National University of Singapore, 18 Science Drive 4, Singapore, 117543, Singapore.

出版信息

AAPS PharmSciTech. 2019 Mar 11;20(3):138. doi: 10.1208/s12249-019-1345-8.

Abstract

Coating of fine primary drug particles by a fluidized bed processor has been reported to be potentially challenging. This work aimed to develop a spray layering process to produce nonpareils by a side spray fluid bed with swirling air flow. The first part examined the effects of various parameters for producing lactose nonpareils by using Box-Behnken design. The factors considered were atomizing air pressure, spray rate, and fluidizing air temperature. This was followed by an in-depth investigation on the effects of inlet airflow rate, air temperature, and spray rate on properties of the product, in addition to process optimization. The results indicated a negative correlation between atomizing air pressure and D (particle size at 90th percentile in the cumulative undersize plot) as well as span (size distribution). Temperature had a positive correlation with D and span while spray rate affected span. Both atomizing air pressure and temperature correlated negatively with span. It was also found that spray rate negatively affected roundness at different coat weight gain levels across the study design space. Inlet airflow rate was found to correlate negatively with roundness at 15%, w/w coat weight gain. The mean useful yield of the optimized runs was about 91%. In the second part of this study, the metformin hydrochloride crystals as starter seeds were converted into nearly spherical shaped spheroids with 1:1 crystals to coat weight deposition over a processing time of about 3.5 h. The processor studied shows promise for direct spheronization of crystals into spherical seeds.

摘要

流化床处理器对细小原药颗粒进行包衣,据报道可能具有挑战性。本工作旨在开发一种喷雾造粒工艺,通过侧喷流化床和旋流空气流生产非球晶。第一部分使用 Box-Behnken 设计研究了通过侧喷流化床和旋流空气流生产乳糖非球晶的各种参数的影响。考虑的因素有雾化空气压力、喷雾速度和流化空气温度。然后,深入研究了进气流量、空气温度和喷雾速度对产品性能的影响,以及工艺优化。结果表明,雾化空气压力与 D(累积小端分布中的第 90 个百分位数的粒径)和跨度(粒径分布)呈负相关。温度与 D 和跨度呈正相关,而喷雾速度影响跨度。雾化空气压力和温度均与跨度呈负相关。还发现,喷雾速度在研究设计空间的不同包衣增重水平下对圆整度呈负相关影响。进气流量与 15%(w/w)包衣增重时的圆整度呈负相关。优化运行的平均有效收率约为 91%。在本研究的第二部分,将盐酸二甲双胍晶体作为起始种子,在约 3.5 小时的处理时间内将其转化为几乎球形的球体,晶体到包衣重量的沉积比例为 1:1。所研究的处理器有望将晶体直接球化为球形种子。

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