Department of Pharmaceutical Sciences, College of Pharmacy & Health Sciences, Campbell University, Buies Creek, NC 27506, USA.
Department Chemistry and Biochemistry, University of South Carolina, Columbia, SC 29208, USA.
Int J Pharm. 2018 Sep 5;548(1):314-324. doi: 10.1016/j.ijpharm.2018.07.001. Epub 2018 Jul 2.
Magnesium stearate (MgSt) is the most commonly used excipient for oral solid dosage forms, yet there is significant commercial physicochemical variability that can lead to variable performance of critical product attributes. Differential scanning calorimetry (DSC) is often used as a quality control tool to characterize MgSt, but little data is available regarding the physicochemical relevance for the DSC thermograms. The main aim of this study was to decipher MgSt's complex thermotropic behavior using DSC, thermogravimetric analysis, capillary melting point, polarized hot-stage microscopy, and temperature dependent small-angle X-ray scattering (SAXS) and assign physicochemical relevance to the DSC thermograms. Several DSC thermal transitions are irreversible after the first heating cycle of a heat-cool-heat-cool-heat cycle. Interestingly, after the first heat cycle, the complex cool-heat-cool-heat DSC thermograms were highly reproducible and exhibited 6 reversible exothermic-endothermic conjugate pairs. SAXS identified 5 distinct mesophases at different temperatures with Phase C' persisting to 250 °C. MgSt maintained molecular ordering beyond 276 °C and did not undergo a simple melting phenomena reported elsewhere. This research serves as a starting point to design heat-treatment strategies to create more uniform MgSt starting material.
硬脂酸镁(MgSt)是最常用于口服固体制剂的赋形剂,但存在显著的商业物理化学可变性,可能导致关键产品属性的性能变化。差示扫描量热法(DSC)通常用作表征 MgSt 的质量控制工具,但有关 DSC 图谱的物理化学相关性的数据很少。本研究的主要目的是使用 DSC、热重分析、毛细熔点、偏光热台显微镜以及随温度变化的小角 X 射线散射(SAXS)来破译 MgSt 的复杂热致行为,并为 DSC 图谱赋予物理化学相关性。在热-冷-热-冷-热循环的第一个加热循环之后,几个 DSC 热转变是不可逆的。有趣的是,在第一个热循环之后,复杂的冷-热-冷-热 DSC 图谱具有高度重现性,并表现出 6 对可逆的放热-吸热共轭对。SAXS 在不同温度下识别出 5 种不同的介相,其中相 C' 持续到 250°C。MgSt 在 276°C 以上保持分子有序性,并且不会经历其他地方报道的简单熔融现象。这项研究为设计热处理策略以创建更均匀的 MgSt 起始材料提供了一个起点。