Physical stability enhancement of theophylline via cocrystallization

被引:473
作者
Trask, Andrew V.
Motherwell, W. D. Sam
Jones, William
机构
[1] Univ Cambridge, Dept Chem, Pfizer Inst Pharmaceut Mat Sci, Cambridge CB2 1EW, England
[2] Cambridge Crystallog Data Ctr, Cambridge CB2 1EZ, England
关键词
theophylline; cocrystal; crystalline molecular complex; crystal engineering; stability; hydrogen bond; hydrate; relative humidity;
D O I
10.1016/j.ijpharm.2006.04.018
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The crystal form adopted by the respiratory drug theophylline was modified using a crystal engineering strategy in order to search for a solid material with improved physical stability. Cocrystals, also referred to as crystalline molecular complexes, were prepared with theophylline and one of several dicarboxylic acids. Four cocrystals of theophylline are reported, one each with oxalic, malonic, maleic and glutaric acids. Crystal structures were obtained for each cocrystal material, allowing an examination of the hydrogen bonding and crystal packing features. The cocrystal design scheme was partly based upon a series of recently reported cocrystals of the molecular analogue, caffeine, and comparisons in packing features are drawn between the two cocrystal series. The theophylline cocrystals were subjected to relative humidity challenges in order to assess their stability in relation to crystalline theophylline anhydrate and the equivalent caffeine cocrystals. None of the cocrystals in this study converted into a hydrated cocrystal upon storage at high relative humidity. Furthermore, the theophylline:oxalic acid cocrystal demonstrated superior humidity stability to theophylline anhydrate under the conditions examined, while the other cocrystals appeared to offer comparable stability to that of theophylline anhydrate. The results demonstrate the feasibility of pharmaceutical cocrystal design based upon the crystallization preferences of a molecular analogue, and furthermore show that avoidance of hydrate formation and improvement in physical stability is possible via pharmaceutical cocrystallization. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:114 / 123
页数:10
相关论文
共 43 条
[1]   DEHYDRATION OF THEOPHYLLINE MONOHYDRATE POWDER - EFFECTS OF PARTICLE-SIZE AND SAMPLE WEIGHT [J].
AGBADA, CO ;
YORK, P .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1994, 106 (01) :33-40
[2]   The Cambridge Structural Database: a quarter of a million crystal structures and rising [J].
Allen, FH .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 2002, 58 (3 PART 1) :380-388
[3]   Systematic analysis of the probabilities of formation of bimolecular hydrogen-bonded ring motifs in organic crystal structures [J].
Allen, FH ;
Motherwell, WDS ;
Raithby, PR ;
Shields, GP ;
Taylor, R .
NEW JOURNAL OF CHEMISTRY, 1999, 23 (01) :25-34
[4]   Crystal engineering of the composition of pharmaceutical phases.: Do pharmaceutical co-crystals represent a new path to improved medicines? [J].
Almarsson, Ö ;
Zaworotko, MJ .
CHEMICAL COMMUNICATIONS, 2004, (17) :1889-1896
[5]  
Bighley L.D., 1996, Encyclopedia of Pharmaceutical Technology, V13, P453
[6]   AN EMPIRICAL CORRECTION FOR ABSORPTION ANISOTROPY [J].
BLESSING, RH .
ACTA CRYSTALLOGRAPHICA SECTION A, 1995, 51 :33-38
[7]   New software for searching the Cambridge Structural Database and visualizing crystal structures [J].
Bruno, IJ ;
Cole, JC ;
Edgington, PR ;
Kessler, M ;
Macrae, CF ;
McCabe, P ;
Pearson, J ;
Taylor, R .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE CRYSTAL ENGINEERING AND MATERIALS, 2002, 58 :389-397
[8]   Crystal engineering approach to forming cocrystals of amine hydrochlorides with organic acids. Molecular complexes of fluoxetine hydrochloride with benzoic, succinic, and fumaric acids [J].
Childs, SL ;
Chyall, LJ ;
Dunlap, JT ;
Smolenskaya, VN ;
Stahly, BC ;
Stahly, GP .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (41) :13335-13342
[9]  
Cohen J. L., 1975, AnalyticalProfiles of Drug Substances, V4, P466, DOI [10.1016/S0099-5428(08)60024-6, DOI 10.1016/S0099-5428(08)60024-6]
[10]   MICROCALORIMETRIC INVESTIGATION OF PHASE-TRANSITIONS .1. IS WATER DESORPTION FROM THEOPHYLLINE-CENTER-DOT-HOH A SINGLE-STEP PROCESS [J].
DUDDU, SP ;
DAS, NG ;
KELLY, TP ;
SOKOLOSKI, TD .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1995, 114 (02) :247-256