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首页> 外文期刊>Journal of pharmaceutical sciences. >Micronization of insulin from halogenated alcohol solution using supercritical carbon dioxide as an antisolvent.
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Micronization of insulin from halogenated alcohol solution using supercritical carbon dioxide as an antisolvent.

机译:使用超临界二氧化碳作为抗溶剂,从卤化醇溶液中将胰岛素微粉化。

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摘要

Insulin was precipitated from solution in 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP) using supercritical carbon dioxide (CO2) as an antisolvent. Biosynthetic human insulin crystals were dissolved in HFIP and the solution was sprayed through an ultrasonic nozzle into supercritical CO2. The factors in the 2(3) factorial experimental design with a center point replicate included pressure (83.7 and 97.5 bar), solution concentration (15 and 30 mg/mL), and solution flow rate (2 and 4 mL/min). Temperature (37 degrees C), CO2 mass flow rate (137 g/min), and volume of solution sprayed (20 mL) were held constant. High-performance liquid chromatography, circular dichroism spectroscopy, infrared and Raman spectroscopy, scanning electron microscopy, dry powder size distribution analysis, thermogravimetric analysis, and atomic absorption spectroscopy were used to characterize the processed insulin powder. The processed insulin retained its potency, was slightly degraded chemically, and exhibited reversible structural changes. The precipitated powder consisted of physical aggregates of 50-nm spheres. Through deagglomeration of these aggregates, it may be possible to obtain discrete uniform particles (1-5 microm) suitable for pulmonary therapy. Over the ranges of operating variables studied, the factors chosen for the experimental design had little effect on the product characteristics.
机译:使用超临界二氧化碳(CO2)作为抗溶剂,将胰岛素从1,1,1,3,3,3-六氟-2-丙醇(HFIP)中的溶液中沉淀出来。将生物合成的人胰岛素晶体溶于HFIP,然后将溶液通过超声喷嘴喷入超临界CO2中。具有中心点重复项的2(3)析因实验设计中的因素包括压力(83.7和97.5 bar),溶液浓度(15和30 mg / mL)和溶液流速(2和4 mL / min)。温度(37摄氏度),CO2质量流量(137克/分钟)和喷雾溶液量(20毫升)保持恒定。高效液相色谱,圆二色光谱,红外和拉曼光谱,扫描电子显微镜,干粉粒度分布分析,热重分析和原子吸收光谱用于表征加工后的胰岛素粉末。加工过的胰岛素保持其效力,在化学上略有降解,并表现出可逆的结构变化。沉淀的粉末由50纳米球体的物理聚集体组成。通过这些聚集体的解聚,有可能获得适用于肺部治疗的离散均匀颗粒(1-5微米)。在研究的工作变量范围内,为实验设计选择的因素对产品特性影响很小。

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