Geometry impact on fundamental properties of theophylline-containing SLS printed pharmaceutical tablets.

Frontiers in drug delivery Pub Date : 2024-03-06 eCollection Date: 2024-01-01 DOI:10.3389/fddev.2024.1358336
Valerie R Levine, Christos S Katsiotis, Maria Strømme, Julian Quodbach, Jonas Lindh
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Abstract

Selective Laser Sintering (SLS) has the potential to offer a more accurate alternative to current-practice manipulation of oral dosage forms for pediatric, geriatric, and dysphagia-suffering patient groups. In order to create the best possible dosage forms for these patient groups, an in-depth look into how a dosage forms geometry impacts the overall properties is essential. In this study, the impact of geometry on SLS manufactured oral dosage forms on the tablet's microstructure, actual-to-theoretical volume, mass deviation, disintegration, and dissolution was investigated. Three different shapes; cylinder, hollow cylinder, and conical frustum with similar surface area (SA), as well as three cylinders with different diameters, were investigated. The results indicate that the geometry has an impact on the mass uniformity, resultant volume, disintegration, and dissolution properties of the tablets. The mass uniformity analysis of the tablets provided the most variation between tablets of different sizes, with more uniformity for tablets with similar SA-to-volume ratio (SA/V). When examining the actual-to-theoretical volume of the tablets, a greater variance between the actual and theoretical volumes for shapes with higher overall SA was observed. The values found are approximately 1.05 for the three differently sized cylinders, 1.23 for the conical frustum, and 1.44 for the hollow cylinder, following this trend. Disintegration data supported a link between SA/V and average disintegration time, observed with the tablet of the highest SA/V disintegrating in 12 s and the tablet with the lowest SA/V disintegrating in 58 s. Dissolution results also indicated a strong dependence on SA/V. Hence, when novel ways to produce oral dosage form tablets become available by additive manufacturing, such as SLS, both geometry and SA/V must be taken into consideration in the tablet design process to ensure appropriate release kinetics and dosing standards.

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Abstract Image

Abstract Image

几何形状对含茶碱SLS印刷片剂基本性质的影响。
选择性激光烧结(SLS)有可能为儿童,老年人和吞咽困难患者群体提供更准确的口服剂型操作替代方案。为了为这些患者群体创造最好的剂型,深入研究剂型几何形状如何影响整体特性是必不可少的。在本研究中,研究了SLS制造的口服剂型的几何形状对片剂微观结构、实际与理论体积、质量偏差、崩解和溶出度的影响。三种不同的形状;研究了具有相似表面积的圆柱、空心圆柱和锥形截锥体以及三种不同直径的圆柱。结果表明,几何形状对片剂的质量均匀性、合成体积、崩解和溶出性能有影响。质量均匀性分析结果表明,不同粒径片剂的质量均匀性差异最大,SA/V相近片剂的质量均匀性更强。当检查片剂的实际与理论体积时,观察到具有较高总体SA的形状的实际和理论体积之间的较大差异。根据这一趋势,三个不同尺寸的圆柱体的值约为1.05,锥形截锥体的值为1.23,空心圆柱体的值为1.44。崩解数据支持SA/V与平均崩解时间之间的联系,最高SA/V的片剂崩解时间为12 s,最低SA/V的片剂崩解时间为58 s。溶出结果也表明对SA/V有很强的依赖性。因此,当通过增材制造生产口服剂型片剂的新方法可用时,例如SLS,在片剂设计过程中必须考虑几何形状和SA/V,以确保适当的释放动力学和剂量标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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