Suppr超能文献

控制冻干体系中甘露醇的物理形态。

Controlling the physical form of mannitol in freeze-dried systems.

机构信息

Department of Pharmaceutics, College of Pharmacy, University of Minnesota, Minneapolis, USA.

出版信息

Eur J Pharm Biopharm. 2013 Oct;85(2):207-13. doi: 10.1016/j.ejpb.2013.04.010. Epub 2013 May 1.

Abstract

A potential drawback with the use of mannitol as a bulking agent is its existence as mannitol hemihydrate (MHH; C₆H₁₄O₆·0.5H₂O) in the lyophile. Once formed during freeze-drying, MHH dehydration may require secondary drying under aggressive conditions which can be detrimental to the stability of thermolabile components. If MHH is retained in the lyophile, the water released by MHH dehydration during storage has the potential to cause product instability. We systematically identified the conditions under which anhydrous mannitol and MHH crystallized in frozen systems with the goal of preventing MHH formation during freeze-drying. When mannitol solutions were cooled, the temperature of solute crystallization was the determinant of the physical form of mannitol. Based on low temperature X-ray diffractometry (using both laboratory and synchrotron sources), MHH formation was observed when solute crystallization occurred at temperatures ≤ -20 °C, while anhydrous mannitol crystallized at temperatures ≤ -10 °C. The transition temperature (anhydrate - MHH) appears to be ∼-15 °C. The use of a freeze-dryer with controlled ice nucleation technology enabled anhydrous mannitol crystallization at ∼-5 °C. Thus, ice crystallization followed by annealing at temperatures ≤ -10 °C can be an effective strategy to prevent MHH formation.

摘要

甘露醇作为一种膨化剂的一个潜在缺点是它以甘露醇半水合物(MHH;C₆H₁₄O₆·0.5H₂O)的形式存在于冻干赋形剂中。一旦在冷冻干燥过程中形成,MHH 脱水可能需要在苛刻条件下进行二次干燥,这可能对热敏成分的稳定性有害。如果 MHH 保留在冻干赋形剂中,MHH 脱水在储存过程中释放的水有可能导致产品不稳定。我们系统地确定了在冷冻系统中无水甘露醇和 MHH 结晶的条件,以期在冷冻干燥过程中防止 MHH 的形成。当甘露醇溶液冷却时,溶质结晶的温度是甘露醇物理形态的决定因素。基于低温 X 射线衍射(使用实验室和同步辐射源),当溶质结晶温度≤-20°C 时观察到 MHH 的形成,而无水甘露醇在温度≤-10°C 时结晶。过渡温度(无水物-MHH)似乎约为-15°C。使用具有控制冰核技术的冷冻干燥机可以在约-5°C 下实现无水甘露醇结晶。因此,冰结晶随后在温度≤-10°C 下退火可以是防止 MHH 形成的有效策略。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验