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硬脂酸镁不同水合物形式作为流动控制剂对载体型制剂物理稳定性和吸入效率的影响

Impact of Different Hydrate Forms of Magnesium Stearate as a Flow Control Agent on the Physical Stability and Inhalation Efficiency of Carrier-Based Formulations.

作者信息

Jeong Jin-Hyuk, Son Jaewoon, Kwon Ji-Hyeon, Han Chang-Soo, Park Chun-Woong

机构信息

Department of Pharmacy, Chungbuk National University, Cheongju-si 28644, Republic of Korea.

GC Biopharma, MSAT/DP Team, Yongin-si 16924, Republic of Korea.

出版信息

Pharmaceutics. 2025 May 28;17(6):711. doi: 10.3390/pharmaceutics17060711.

Abstract

This study aimed to evaluate the impact of the different hydration states of magnesium stearate (Mg.st) anhydrate (AH), monohydrate (MH), and dihydrate (DH) on the aerodynamic performance and stability of carrier-based dry powder inhalation (DPI) formulations using arformoterol and budesonide as model drugs. : DPI formulations were prepared using Inhalac 251 lactose and Mg.st in various hydrated forms. The physicochemical properties of Mg.st were characterized using powder X-ray diffraction, differential scanning calorimetry, Fourier-transform infrared spectroscopy, Karl Fischer titration, dynamic vapor absorption, and Raman imaging. The aerodynamic performance was assessed employing a next-generation impactor under initial and accelerated conditions (40 °C, 75% relative humidity). : Mg.st-MH exhibited the highest crystallinity and the most stable moisture sorption profile, and showed the smallest particle size within the formulation as observed in the Raman images. Formulations containing Mg.st-MH demonstrated significantly higher fine particle fractions for both arformoterol (51.02 ± 5.16%) and budesonide (61.98 ± 4.09%) compared to formulations with Mg.st-AH or -DH forms. Mg.st-MH also exhibited improved performance retention under accelerated conditions, correlating with its physicochemical stability. : The monohydrate form of magnesium stearate was the most effective force control agent, which reduced interparticulate interactions, thereby enhancing the inhalation efficiency and formulation stability. Thus, selecting an appropriate hydration form of Mg.st can improve DPI performance.

摘要

本研究旨在评估硬脂酸镁(Mg.st)无水物(AH)、一水合物(MH)和二水合物(DH)的不同水合状态对以阿福特罗和布地奈德为模型药物的载体型干粉吸入剂(DPI)制剂的空气动力学性能和稳定性的影响。使用Inhalac 251乳糖和各种水合形式的Mg.st制备DPI制剂。通过粉末X射线衍射、差示扫描量热法、傅里叶变换红外光谱、卡尔费休滴定法、动态蒸汽吸附和拉曼成像对Mg.st的物理化学性质进行表征。在初始条件和加速条件(40℃,75%相对湿度)下,使用下一代撞击器评估空气动力学性能。Mg.st-MH表现出最高的结晶度和最稳定的吸湿曲线,并且在拉曼图像中观察到其在制剂中的粒径最小。与含有Mg.st-AH或-DH形式的制剂相比,含有Mg.st-MH的制剂对阿福特罗(51.02±5.16%)和布地奈德(61.98±4.09%)均表现出显著更高的细颗粒分数。Mg.st-MH在加速条件下也表现出更好的性能保持率,与其物理化学稳定性相关。硬脂酸镁的一水合物形式是最有效的力控制剂,它减少了颗粒间的相互作用,从而提高了吸入效率和制剂稳定性。因此,选择合适水合形式的Mg.st可以改善DPI性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cf1/12195998/bda2e750e3b2/pharmaceutics-17-00711-g001.jpg

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