Using density changes to monitor blending with magnesium stearate by terahertz time-domain spectroscopy

IF 5.2 2区 医学 Q1 PHARMACOLOGY & PHARMACY International Journal of Pharmaceutics Pub Date : 2025-03-15 Epub Date: 2025-01-31 DOI:10.1016/j.ijpharm.2025.125303
Moritz Anuschek , Thea Nilsson , Anne Linnet Skelbæk-Lorenzen , Thomas Kvistgaard Vilhelmsen , J.Axel Zeitler , Jukka Rantanen
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Abstract

Magnesium stearate (MgSt) is among the most common excipients and the most common lubricant in solid oral products. It is primarily added to tablet formulations to ease ejection during tablet compression. While commonly present in low concentrations, the addition of MgSt substantially affects the final tablet properties. Its impact is further not only concentration dependent but also varies with exposure of the formulation to shear, which worst-case results in over-lubrication. The presented study investigated the applicability of terahertz time-domain spectroscopy (THz-TDS) to monitor the shear-induced blend densification of microcrystalline cellulose blended with MgSt over a range of concentrations (0.3, 0.7, and 1.0 %). The effect of shear was investigated by variation of blending times (5 – 20 min) in a diffusion blender. THz-TDS measurements of the powder blends were acquired in transmission by measuring directly through the mixing container. The refractive index at terahertz frequencies was found to be sufficiently sensitive to resolve the densification of the blend with increased blending times. Thus, THz-TDS blend density measurements can be used as a surrogate parameter to evaluate the total shear exposure of a blend. Considerations regarding implementation are discussed. In the context the approach was integrated with the well-described THz-TDS-based tablet porosity analysis into a unified model to monitor and predict the tensile strength. Including the THz-TDS measurement on the blend allowed for a more accurate description of the tensile strength, reducing the root mean squared error by over 40 % (0.33 MPa). The possibility of monitoring the density changes of a blend non-invasively makes THz-TDS a promising process analytical technology approach for controlling the total shear impact on lubricated blends and tablet quality.

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利用太赫兹时域光谱法,利用密度变化监测与硬脂酸镁的混合。
硬脂酸镁(MgSt)是固体口服产品中最常见的赋形剂和最常见的润滑剂之一。它主要被添加到片剂配方中,以缓解片剂压缩期间的喷出。虽然通常以低浓度存在,但MgSt的添加实质上影响了最终片剂的性能。它的影响不仅与浓度有关,而且与配方的剪切暴露有关,最坏情况下会导致过度润滑。本研究探讨了太赫兹时域光谱(THz-TDS)在一定浓度范围内(0.3、0.7和1.0 % w/w)监测微晶纤维素与MgSt混合的剪切致密度的适用性。通过搅拌次数(5 ~ 20 min)的变化考察了剪切的影响。通过直接通过混合容器测量,在传输过程中获得了粉末混合物的太赫兹- tds测量值。在太赫兹频率的折射率被发现是足够敏感的,以解决密度的混合增加的混合时间。因此,太赫兹- tds共混密度测量可以作为替代参数来评估共混物的总剪切暴露。讨论了关于实现的注意事项。在这种情况下,该方法与基于太赫兹- tds的片剂孔隙度分析相结合,形成一个统一的模型,以监测和预测抗拉强度。包括对共混物的THz-TDS测量,可以更准确地描述抗拉强度,将均方根误差降低40 %(0.33 MPa)以上。无创监测共混物密度变化的可能性使太赫兹- tds成为一种有前途的过程分析技术方法,用于控制总剪切对润滑共混物和片剂质量的影响。
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来源期刊
CiteScore
10.70
自引率
8.60%
发文量
951
审稿时长
72 days
期刊介绍: The International Journal of Pharmaceutics is the third most cited journal in the "Pharmacy & Pharmacology" category out of 366 journals, being the true home for pharmaceutical scientists concerned with the physical, chemical and biological properties of devices and delivery systems for drugs, vaccines and biologicals, including their design, manufacture and evaluation. This includes evaluation of the properties of drugs, excipients such as surfactants and polymers and novel materials. The journal has special sections on pharmaceutical nanotechnology and personalized medicines, and publishes research papers, reviews, commentaries and letters to the editor as well as special issues.
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