Pharmaceutical Sciences, Merck & Co., Inc, 126 E. Lincoln Ave, Rahway, NJ, 07065, USA.
Center for Materials Science and Engineering, Merck & Co., Inc., 770 Sumneytown Pike, West Point, PA, 19486, USA.
Pharm Res. 2023 Aug;40(8):2071-2085. doi: 10.1007/s11095-023-03577-y. Epub 2023 Aug 8.
Using a high level of mannitol as a diluent in oral formulations can potentially result in tablet defects (e.g., chipping, cracking) during compression. This work aims to scrutinize the linkage between the mechanical properties and material attributes of mannitol and also uncover how variations between vendors and lots can lead to significant changes in the compaction performance of tablet formulations containing mannitol.
The mechanical properties (Poisson's ratio, fracture energy) and mechanical performance (ejection force, pressure transmission ratio, residual radial die-wall stress, and tensile strength) of mannitol compacts were assessed on a compaction simulator for four lots of mannitol from two different vendors. The variation of material attributes of each lot, including particle size distribution (PSD), crystal form, primary crystal size and morphology, specific surface area (SSA), powder flow, and moisture absorption were investigated.
The variability of material attributes in mannitol lots, especially primary crystal size and SSA, can result in significant changes in mechanical properties and mechanical performance such as ejection force and residual radial die-wall stresses, which potentially led to chipping during compression.
The study elucidated the linkage between fundamental material attributes and mechanical properties of mannitol, highlighting their impact on tablet defects and compaction performance in compression. A comprehensive understanding of the variability in mannitol properties between vendors and lots is crucial for successful formulation development, particularly when high percentages of mannitol are included as a brittle excipient.
在口服制剂中使用高浓度甘露醇作为稀释剂,可能会导致片剂在压缩过程中出现缺陷(如崩解、开裂)。本研究旨在探讨甘露醇的机械性能和材料属性之间的关系,并揭示供应商和批次之间的差异如何导致含甘露醇片剂配方的压缩性能发生显著变化。
在压缩模拟器上评估了来自两个不同供应商的四个甘露醇批次的甘露醇压块的机械性能(泊松比、断裂能)和机械性能(推出力、压力传递比、残余径向模壁应力和拉伸强度)。研究了每个批次的材料属性变化,包括粒度分布(PSD)、晶型、初级晶体尺寸和形态、比表面积(SSA)、粉末流动性和吸湿性。
甘露醇批次的材料属性变化,尤其是初级晶体尺寸和 SSA,可能导致机械性能和机械性能发生显著变化,如推出力和残余径向模壁应力,这可能导致压缩过程中崩解。
该研究阐明了甘露醇基本材料属性和机械性能之间的关系,强调了它们对片剂缺陷和压缩性能的影响。全面了解供应商和批次之间甘露醇性质的可变性对于成功的配方开发至关重要,特别是当甘露醇作为脆性赋形剂使用高百分比时。