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首页> 外文期刊>Molecular pharmaceutics >Qualitative and Quantitative Characterization of Composition Heterogeneity on the Surface of Spray Dried Amorphous Solid Dispersion Particles by an Advanced Surface Analysis Platform with High Surface Sensitivity and Superior Spatial Resolution
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Qualitative and Quantitative Characterization of Composition Heterogeneity on the Surface of Spray Dried Amorphous Solid Dispersion Particles by an Advanced Surface Analysis Platform with High Surface Sensitivity and Superior Spatial Resolution

机译:高表面敏感平台及高型空间分辨率对喷雾干燥无定形固体分散颗粒表面上的组成异质性的定性和定量表征

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摘要

Surface composition critically impacts stability (e.g., crystallization) and performance (e.g., dissolution) of spray dried amorphous solid dispersion (ASD) formulations; however, traditional characterization techniques such as Raman and infrared spectroscopies may not provide useful information on surface composition on the spray dried ASD particles due to low spatial resolution, high probing depth, and lack of quantitative information. This study presents an advanced surface characterization platform consisting of two complementary techniques: X-ray photoelectron spectroscopy (XPS) and time-of-flight secondary ion mass spectrometry (ToF-SIMS). Such a platform enables qualitative and quantitative measurements of surface composition for the fine spray dried ASD particles with ultrasurface-sensitivity (less than 10 nm from the surface) and superior spatial resolution (approximately 250 nm for ToF-SIMS). Both XPS and ToF-SIMS demonstrated that the polymer (PVPVA) was dominantly enriched on the surface of our spray dried naproxen-PVPVA ASD particles. Of a particular note was that XPS could differentiate two batches of spray dried ASD particles with a subtle difference in surface composition produced by varying feed solution solvents. This advanced surface characterization platform will provide essential surface information to understand the mechanisms underlying the impact of surface composition on stability (e.g., crystallization) and functionality (e.g., dissolution) in future studies.
机译:表面作用作用致力于冲击喷雾干燥无定形固体分散体(ASD)制剂的稳定性(例如,结晶)和性能(例如,溶解)。然而,由于低空间分辨率,高探测深度和缺乏定量信息,传统的表征技术如拉曼和红外光谱,例如拉曼和红外光谱,例如拉曼和红外光谱的技术可能无法提供有关喷雾干燥的ASD颗粒上的表面组合物的​​有用信息。本研究介绍了由两种互补技术组成的先进表面表征平台:X射线光电子体光谱(XPS)和飞行时间二次离子质谱(TOF-SIMS)。这种平台使得微喷雾干燥ASD颗粒的表面组合物的​​定性和定量测量具有超细敏感性(从表面的小于10nm)和优异的空间分辨率(对于TOF-SIMS约250nm)。 XPS和TOF-SIM普及都证明了聚合物(PVPVA)在我们的喷雾干燥的萘普克森-PVPVA ASD颗粒的表面上富集。特定注意的是,XPS可以将两批喷雾干燥的颗粒分批与通过不同进料溶液溶剂制备的表面组合物的​​微妙差异。这种先进的表面表征平台将提供必要的表面信息,以了解表面组成对未来研究中稳定性(例如,结晶)和功能(例如,溶解)的稳定性的影响的机制。

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