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Effect of shape of sodium salicylate particles on physical property and in vitro aerosol performance of granules prepared by pressure swing granulation method

机译:水杨酸钠颗粒的形状对变压制粒法制备的颗粒的物理性质和体外气溶胶性能的影响

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摘要

The purpose of this research was to investigate the effect of the shape of sodium salicylate (SS) particles on the physical properties as well as the in vitro aerosol performance of the granules granulated by the pressure swing granulation method. SS was pulverized with a jet mill (JM) to prepare the distorted particles, and SS aqueous solution was spray dried (SD) to prepare the nearly spherical particles. The particle size distribution, crushing strength, and pore size distribution of the granules were measured. The adhesive force of the primary particles in the granules was calculated according to Rumpf's equation. The in vitro aerosol performance of the granules was evaluated using a cascade impactor. Both JM and SD particles can be spherically granulated by the pressure swing granulation method without the use of a binder. The size of SD granules was smaller than that of JM granules. Although the crushing strength of the JM and SD granules is almost the same, the internal structures of JM granules and SD granules were found to differ, and the SD particles appear to have been condensed uniformly, resulting in a nearly spherical shape. In the inhalation investigation, the percentage of SS particles of appropriate size delivered to the region for treatment was noticeably higher for SD granules than for JM granules. This finding might be because the adhesive force of the SD primary particles was smaller than that of the JM primary particles in the granules and because the SD granules could be easily separated by air current to obtain the primary particles.
机译:这项研究的目的是研究水杨酸钠(SS)颗粒形状对变压造粒法制粒颗粒的物理性能以及体外气溶胶性能的影响。用喷射式粉碎机(JM)将SS粉碎以制备变形的颗粒,并且将SS水溶液喷雾干燥(SD)以制备接近球形的颗粒。测量颗粒的粒度分布,破碎强度和孔径分布。根据Rumpf方程计算颗粒中一次颗粒的粘附力。使用级联撞击器评估颗粒的体外气雾剂性能。 JM和SD颗粒都可以通过变压造粒法球形造粒而无需使用粘合剂。 SD颗粒的尺寸小于JM颗粒的尺寸。尽管JM和SD颗粒的抗碎强度几乎相同,但是发现JM颗粒和SD颗粒的内部结构不同,并且SD颗粒似乎已经均匀地凝结,从而形成接近球形。在吸入研究中,SD颗粒输送给治疗区域的适当大小的SS颗粒的百分比明显高于JM颗粒。该发现可能是因为SD初级颗粒的粘附力小于颗粒中JM初级颗粒的粘附力,并且因为SD颗粒可以容易地被气流分离以获得初级颗粒。

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