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冻干过程中蛋白质干燥应力的研究:使用湿度控制的小型冷冻干燥机区分乳酸脱氢酶的一次干燥应力和二次干燥应力。

Investigation of drying stresses on proteins during lyophilization: differentiation between primary and secondary-drying stresses on lactate dehydrogenase using a humidity controlled mini freeze-dryer.

作者信息

Luthra Sumit, Obert Jean-Philippe, Kalonia Devendra S, Pikal Michael J

机构信息

School of Pharmacy, University of Connecticut, Storrs, Connecticut 06269, USA.

出版信息

J Pharm Sci. 2007 Jan;96(1):61-70. doi: 10.1002/jps.20758.

Abstract

This article describes the design, performance testing, and application of a controlled humidity mini-freeze-dryer in studying the physical stability of lactate dehydrogenase during lyophilization. Performance evaluation of the mini-freeze-dryer was conducted with tests, namely water sublimation, radiation heat exchange, lowest achievable temperature, and leak testing. Protein stability studies were conducted by comparing protein activity at various stages of lyophilization with the initial activity. The shelf and condenser temperature were stable at <-40 degrees C, wall temperature was within 2 degrees C of the shelf temperature, and the leak rate was small. The chamber pressure was controlled by the ice on the condenser and the product temperature during sublimation was equal to the shelf temperature. Addition of Tween 80 prevented activity loss in solution and after freeze-thaw. No activity loss was observed after primary-drying even in absence of lyoprotectants and with collapse of cake structure. Five percent (w/w) sucrose concentration was required to achieve full stabilization. In conclusion, performance testing established that the mini-freeze-dryer was suitable for mechanistic freeze-drying studies. Secondary-drying was the critical step for protein stability. The concentration of sucrose required to stabilize the protein completely was several orders of magnitude higher than that required to satisfy the direct interaction requirement of the protein.

摘要

本文描述了一种用于研究乳酸脱氢酶冻干过程中物理稳定性的可控湿度小型冻干机的设计、性能测试及应用。通过水升华、辐射热交换、最低可达到温度及泄漏测试等对该小型冻干机进行性能评估。通过比较冻干各阶段的蛋白质活性与初始活性来进行蛋白质稳定性研究。搁板和冷凝器温度稳定在<-40℃,壁温在搁板温度的2℃范围内,且泄漏率小。腔室压力由冷凝器上的冰控制,升华过程中产品温度等于搁板温度。添加吐温80可防止溶液及冻融后的活性损失。即使在没有冻干保护剂且饼状结构塌陷的情况下,一次干燥后也未观察到活性损失。需要5%(w/w)的蔗糖浓度才能实现完全稳定。总之,性能测试表明该小型冻干机适用于机理冻干研究。二次干燥是蛋白质稳定性的关键步骤。完全稳定蛋白质所需的蔗糖浓度比满足蛋白质直接相互作用需求所需的浓度高几个数量级。

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