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首页> 外文期刊>European journal of pharmaceutical sciences >Spray freezing into liquid versus spray-freeze drying: Influence of atomization on protein aggregation and biological activity.
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Spray freezing into liquid versus spray-freeze drying: Influence of atomization on protein aggregation and biological activity.

机译:喷雾冷冻成液体与喷雾冷冻干燥:雾化对蛋白质聚集和生物活性的影响。

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摘要

Protein aggregation and enzyme activity were compared for reconstituted lysozyme particles produced by two cryogenic technologies, spray freezing into liquid (SFL) and spray-freeze drying (SFD). The particles were characterized by enzyme activity measurements, scanning electron microscopy (SEM), light scattering, X-ray photoelectron spectroscopy (XPS) and BET specific surface area analysis. Highly porous microparticle aggregates of protein nanoparticles, observed by SEM, were produced by both processes. The smaller degree of protein aggregation and smaller losses in enzyme activity for the SFL process relative to the SFD process were due primarily to the spraying step. The higher stability of the SFL versus SFD powders was consistent with the smaller surface excess of lysozyme measured by XPS in SFL, resulting from the reduced time of exposure to the air-water interface during atomization. For pure lysozyme, the degree of aggregation and enzyme activity were comparable for lyophilization and SFL, despite the much larger particle surface area for SFL.
机译:比较了两种低温技术产生的重组溶菌酶颗粒的蛋白质聚集和酶活性,这两种技术是喷雾冷冻成液体(SFL)和喷雾冷冻干燥(SFD)。通过酶活性测量,扫描电子显微镜(SEM),光散射,X射线光电子能谱(XPS)和BET比表面积分析来表征颗粒。通过SEM观察,通过两种方法均产生了蛋白质纳米颗粒的高度多孔的微粒聚集体。与SFD工艺相比,SFL工艺的蛋白质聚集程度较小,酶活性损失较小,这主要是由于喷涂步骤所致。 SFL与SFD粉末相比,稳定性更高,这与XPS在SFL中测得的溶菌酶表面残留量较小有关,这是由于雾化过程中减少了暴露于空气-水界面的时间所致。对于纯溶菌酶,尽管SFL的颗粒表面积大得多,但冻干和SFL的聚集度和酶活性相当。

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