首页> 美国卫生研究院文献>AAPS PharmSciTech >Preparation and In Vitro Aerosol Performance of Spray-Dried Shuang-Huang-Lian Corrugated Particles in Carrier-Based Dry Powder Inhalers
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Preparation and In Vitro Aerosol Performance of Spray-Dried Shuang-Huang-Lian Corrugated Particles in Carrier-Based Dry Powder Inhalers

机译:载体干粉吸入器中喷雾干燥的双黄连波纹颗粒的制备及体外气溶胶性能

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摘要

The development of dry powder inhalation (DPI) products of traditional Chinese medicine (TCM) remains to be a challenge due to chemical complexity and batch-to-batch variations in constituent composition. This study was to investigate the feasibility of using spray-dried corrugated particles to improve the aerodynamic performance of a TCM, Shuang-Huang-Lian (SHL), in carrier-based DPI. Particles with different surface roughness were spray-dried by the addition of leucine and concomitant manipulation of spray-drying parameters. The surface roughness was determined by atomic force microscopy, whilst the aerodynamic performance of drug particle–mannitol/lactose blends was evaluated using a next-generation pharmaceutical impactor through a Cyclohaler. Although the emission efficiency for corrugated particle-based DPI was ∼10% lower than that for smooth SHL, the fine particle fractions (FPF<4.4 μm) of 32.4–36.8% for the former were significantly higher than those of 14.7–16.2% for the latter. In particular, the FPF and fraction of drug detached from the carrier appeared not to be significantly affected by the variation in constituent composition of SHL. This study demonstrates that the use of corrugated particles in carrier-based DPI improved aerosol performance by facilitating drug detachment from the carrier, independent of variation in constituent composition, and such particles were potentially applicable to the development of SHL DPI products.
机译:由于化学复杂性和成分组成的逐批变化,中药干粉吸入(DPI)产品的开发仍然是一个挑战。这项研究旨在调查在基于载体的DPI中使用喷雾干燥的波纹状颗粒改善中药双黄连(SHL)的空气动力学性能的可行性。通过添加亮氨酸并同时控制喷雾干燥参数,将具有不同表面粗糙度的颗粒喷雾干燥。表面粗糙度是通过原子力显微镜确定的,而药物颗粒-甘露醇/乳糖混合物的空气动力学性能是使用新一代药物撞击器通过Cyclohaler进行评估的。尽管基于波纹颗粒的DPI的排放效率比光滑SHL的排放效率低约10%,但前者的细颗粒分数(FPF <4.4μm)为32.4–36.8%,明显高于后者的14.7–16.2%后者。特别地,FPF和从载体分离的药物的分数似乎不受SHL的组成组成的变化显着影响。这项研究表明,在基于载体的DPI中使用波纹状颗粒可通过促进药物与载体的分离而改善气雾剂性能,而与成分组成的变化无关,并且这种颗粒潜在地可用于SHL DPI产品的开发。

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