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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Preparation of chitosan microparticles with diverse molecular weights using supercritical fluid assisted atomization introduced by hydrodynamic cavitation mixer
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Preparation of chitosan microparticles with diverse molecular weights using supercritical fluid assisted atomization introduced by hydrodynamic cavitation mixer

机译:水力空化混合器引入超临界流体辅助雾化制备分子量不同的壳聚糖微粒

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摘要

Supercritical fluid assisted atomization introduced by hydrodynamic cavitation mixer (SAA-HCM) was used to prepare chitosan microparticles with the well-defined spherical morphology and the controlled particle size distribution as a promising carrier for drug delivery system. Chitosan with different molecular weights (3 kDa, 50 kDa, 300 kDa) was successfully micronized, in which water was used as the solvent for 3 kDa chitosan, while 1.0% (v/v) acetic acid aqueous solution was used for 50 kDa and 300 kDa chitosan, respectively. The process parameters including operating pressure and temperature in the mixer, mass flow ratio of CO2/solution, precipitator temperature and solution concentration were explored to evaluate their influences on the morphologies and size distributions of precipitated particles. Results showed that particle size tailoring (ranging between 0.2 and 5 urn) could be achieved through modulation of the process parameters. After processing by SAA-HCM, Fourier transform infrared spectroscopy did not indicate significant change in the main structure of chitosan microparticles. Compared with raw materials, a decrease in crystallinity and thermal stability was observed for the SAA-HCM processed chitosan microparticles, as demonstrated by X-ray diffraction, thermogravimetric analysis and differential scanning calorimetry.
机译:利用水力空化混合器(SAA-HCM)引入的超临界流体辅助雾化法制备了具有明确球形形态和可控粒径分布的壳聚糖微粒,为药物输送系统提供了有希望的载体。成功地将不同分子量(3 kDa,50 kDa,300 kDa)的壳聚糖微粉化,其中水用作3 kDa壳聚糖的溶剂,而1.0%(v / v)乙酸水溶液用于50 kDa和分别为300 kDa的壳聚糖。探索了工艺参数,包括混合器中的工作压力和温度,CO2 /溶液的质量流量比,沉淀器温度和溶液浓度,以评估它们对沉淀颗粒的形态和尺寸分布的影响。结果表明,可以通过调节工艺参数来实现粒度调整(0.2至5微米)。经SAA-HCM处理后,傅里叶变换红外光谱未表明壳聚糖微粒的主要结构发生显着变化。通过X射线衍射,热重分析和差示扫描量热法证明,与原料相比,SAA-HCM处理的壳聚糖微粒的结晶度和热稳定性均下降。

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