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环磷酰胺对冻干过程中甘露醇固体形态的影响。

Effect of cyclophosphamide on the solid form of mannitol during lyophilization.

作者信息

Patel Krupaliben, Munjal Bhushan, Bansal Arvind K

机构信息

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), SAS Nagar, Punjab 160062, India.

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), SAS Nagar, Punjab 160062, India.

出版信息

Eur J Pharm Sci. 2017 Apr 1;101:251-257. doi: 10.1016/j.ejps.2017.02.025. Epub 2017 Feb 16.

Abstract

Mannitol is a commonly used bulking agent in lyophilized formulations. It can crystallize into multiple solid forms during lyophilization thereby exhibiting phase heterogeneity and variability in product performance. In this manuscript, we studied the effect of cyclophosphamide (CPA), an anticancer drug, on the solid form of mannitol during lyophilization from aqueous solutions. Freeze-concentration studies were performed in the DSC while lyophilization was performed in a lab scale freeze dryer. DSC experiments revealed two-stage crystallization of mannitol (1.5% w/v) during freeze-concentration, evident as two distinct exothermic events (at -18.2°C and -30°C) in the cooling curve. This was complemented by two eutectic melting endotherms in the subsequent heating curve. Addition of CPA (4.0% w/v) completely inhibited the exotherm at -18.2°C, but enhanced the enthalpy of exotherm at -30°C by five folds. Likewise, only one eutectic melting endotherm was observed in the subsequent heating curve. Lyophilization of the solution containing only mannitol, yielded a mixture of β- (major) and δ- (minor) polymorphs of mannitol. However, in the presence of CPA, only δ-polymorph was observed in the lyophilized sample. This selective favoring of the metastable δ-polymorph over the stable β-polymorph, was explained by altered freezing kinetics of the solution in presence of CPA. The study provides mechanistic insights into solute crystallization behaviour during lyophilization of multi-component systems.

摘要

甘露醇是冻干制剂中常用的填充剂。在冻干过程中,它可结晶形成多种固体形式,从而表现出相异质性和产品性能的变异性。在本论文中,我们研究了抗癌药物环磷酰胺(CPA)对甘露醇从水溶液冻干过程中固体形式的影响。在差示扫描量热仪(DSC)中进行冷冻浓缩研究,同时在实验室规模的冻干机中进行冻干。DSC实验显示,冷冻浓缩过程中甘露醇(1.5% w/v)出现两阶段结晶,在冷却曲线中表现为两个明显的放热事件(分别在-18.2°C和-30°C)。随后的加热曲线中有两个低共熔吸热峰对此进行了补充。加入CPA(4.0% w/v)完全抑制了-18.2°C处的放热,但使-30°C处的放热焓增加了五倍。同样,在随后的加热曲线中只观察到一个低共熔吸热峰。仅含甘露醇的溶液冻干后,得到了甘露醇β-(主要)和δ-(次要)多晶型的混合物。然而,在有CPA存在的情况下,冻干样品中只观察到δ-多晶型。在CPA存在下溶液冷冻动力学的改变解释了这种亚稳δ-多晶型相对于稳定β-多晶型的选择性偏好。该研究为多组分系统冻干过程中溶质结晶行为提供了机理见解。

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