Study of the individual contributions of ice formation and freeze-concentration on isothermal stability of lactate dehydrogenase during freezing

被引:104
作者
Bhatnagar, Bakul S. [1 ]
Pikal, Michael J. [1 ,2 ]
Bogner, Robin H. [1 ,2 ]
机构
[1] Univ Connecticut, Sch Pharm, U 3092, Storrs, CT 06269 USA
[2] Univ Connecticut, Inst Mat Sci, Storrs, CT 06269 USA
关键词
freeze-concentration; freeze-drying; freeze-thawing; ice nucleation; ice surface area; lyophilization; preformulation; protein formulation; protein stability and freezing; SPRAY-LYOPHILIZED FORMULATIONS; PROTEIN TERTIARY STRUCTURE; PHOSPHATE BUFFER SYSTEMS; HUMAN INTERFERON-GAMMA; INDUCED DENATURATION; AQUEOUS-SOLUTIONS; FROZEN STATE; LACTIC DEHYDROGENASE; COLD DENATURATION; PRACTICAL ADVICE;
D O I
10.1002/jps.21017
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The objective of this study was to determine the individual contributions of ice formation, solute concentration, temperature, and time, to irreversible protein denaturation during freezing. A temperature-step approach was used to study isothermal degradation of frozen lactate dehydrogenase (LDH). The freeze-concentrate composition was determined using differential scanning calorimetry to enable preparation of solutions, without ice, of the same concentration as the freeze-concentrate, and thereby determine the role of the freeze-concentrate composition on LDH degradation. Both stabilizers employed in the study, hydroxyethyl starch and sucrose, conferred cryoprotection on LDH. While LDH stability was lower at 1.50-3.25% w/v sucrose than in the absence of sucrose, cryoprotection was restored at higher sucrose concentrations. pH shift during freezing, degree of supercooling, and excipient impurities were ruled out as causes for unusual LDH stability behavior at lower sucrose concentrations. Specific surface area measurements of the freeze-dried cakes showed that the ice surface area increased with an increase in sucrose concentration. No LDH degradation occurred in concentrated solutions, without ice, at the same composition as the freeze-concentrate in frozen systems where massive degradation was documented. Thus, ice formation is the critical destabilizing factor during freezing of LDH in sucrose:citrate buffer systems. (C) 2007 Wiley-Liss, Inc. and the American Pharmacists Association.
引用
收藏
页码:798 / 814
页数:17
相关论文
共 72 条
[61]  
Szkudlarek B.A., 1997, Selective Crystallization of Phosphate Buffer Components and pH Changes During Freezing: Implications to Protein Stability, Pharmaceutics
[62]  
TABORSKY G, 1970, J BIOL CHEM, V245, P1054
[63]  
TABORSKY G, 1979, PROTEINS LOW TEMPERA, P1
[64]   FREEZE DENATURATION OF ENZYMES AND ITS PREVENTION WITH ADDITIVES [J].
TAMIYA, T ;
OKAHASHI, N ;
SAKUMA, R ;
AOYAMA, T ;
AKAHANE, T ;
MATSUMOTO, JJ .
CRYOBIOLOGY, 1985, 22 (05) :446-456
[65]   Measurement of the kinetics of protein unfolding in viscous systems and implications for protein stability in freeze-drying [J].
Tang, XL ;
Pikal, MJ .
PHARMACEUTICAL RESEARCH, 2005, 22 (07) :1176-1185
[66]   The effect of stabilizers and denaturants on the cold denaturation temperatures of proteins and implications for freeze-drying [J].
Tang, XL ;
Pikal, MJ .
PHARMACEUTICAL RESEARCH, 2005, 22 (07) :1167-1175
[67]   Design of freeze-drying processes for pharmaceuticals: Practical advice [J].
Tang, XL ;
Pikal, MJ .
PHARMACEUTICAL RESEARCH, 2004, 21 (02) :191-200
[68]   Surface adsorption of recombinant human interferon-γ in lyophilized and spray-lyophilized formulations [J].
Webb, SD ;
Golledge, SL ;
Cleland, JL ;
Carpenter, JF ;
Randolph, TW .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2002, 91 (06) :1474-1487
[69]   Effects of annealing lyophilized and spray-lyophilized formulations of recombinant human interferon-γ [J].
Webb, SD ;
Cleland, JL ;
Carpenter, JF ;
Randolph, TW .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2003, 92 (04) :715-729
[70]   EFFECTS OF FREEZE-THAW PROCESS ON ALPHA-AMYLASE [J].
WHITTAM, JH ;
ROSANO, HL .
CRYOBIOLOGY, 1973, 10 (03) :240-243