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L-精氨酸-柠檬酸混合物冷冻干燥过程中的成分结晶与物理塌陷

Component crystallization and physical collapse during freeze-drying of L-arginine-citric acid mixtures.

作者信息

Yamaki Takuya, Ohdate Ryohei, Nakadai Eriko, Yoshihashi Yasuo, Yonemochi Etsuo, Terada Katsuhide, Moriyama Hiroshi, Izutsu Ken-ichi, Yomota Chikako, Okuda Haruhiro, Kawanishi Toru

机构信息

Faculty of Sciences, Toho University, 2-2-1 Miyama, Funabashi, Chiba 274-8510, Japan.

出版信息

Chem Pharm Bull (Tokyo). 2012;60(9):1176-81. doi: 10.1248/cpb.c12-00388.

DOI:10.1248/cpb.c12-00388
PMID:22976327
Abstract

Component crystallization and physical collapse during freeze-drying of aqueous solutions containing protein-stabilizing L-arginine and citric acid mixtures were studied. Freeze-drying microscopy (FDM) and thermal analysis of the solute-mixture frozen solutions showed collapse onset at temperatures (T(c)) approximately 10°C higher than their T(g)'s (glass transition temperatures of the maximally freeze-concentrated solute phase). Experimental freeze-drying of these solutions at a low chamber pressure showed the occurrence of physical collapse at shelf temperatures close to or slightly higher than the T(c). Slower ice sublimation at higher chamber pressures induced the physical collapse from lower shelf temperatures. The large effect of chamber pressures on the collapse-inducing shelf temperatures confirmed significance of the sublimation-related heat loss on the sublimation interface temperature during the primary drying. Drying of the single-solute L-arginine solution resulted in cake-structure solids composed of its anhydrous crystal. Thermal and powder X-ray diffraction (PXRD) analysis suggested slow crystal nucleation of L-arginine dihydrate in the frozen solutions. Characterization of the frozen solutions and freeze-dried solids should enable rational formulation design and process control of amino acid-containing lyophilized pharmaceuticals.

摘要

研究了含有蛋白质稳定剂L-精氨酸和柠檬酸混合物的水溶液在冷冻干燥过程中的成分结晶和物理塌陷。冷冻干燥显微镜(FDM)和溶质混合物冷冻溶液的热分析表明,塌陷起始温度(T(c))比其T(g)(最大冷冻浓缩溶质相的玻璃化转变温度)高约10°C。在低腔室压力下对这些溶液进行实验冷冻干燥表明,在接近或略高于T(c)的搁板温度下会发生物理塌陷。在较高腔室压力下较慢的冰升华会导致在较低搁板温度下发生物理塌陷。腔室压力对塌陷诱导搁板温度的巨大影响证实了在一次干燥过程中升华相关热损失对升华界面温度的重要性。单溶质L-精氨酸溶液的干燥产生了由其无水晶体组成的饼状结构固体。热分析和粉末X射线衍射(PXRD)分析表明,冷冻溶液中L-精氨酸二水合物的晶体成核缓慢。对冷冻溶液和冷冻干燥固体的表征应有助于含氨基酸冻干药物的合理配方设计和工艺控制。

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