The spray drying of acetazolamide as method to modify crystal properties and to improve compression behaviour

被引:43
作者
Di Martino, P
Scoppa, M
Joiris, E
Palmieri, GF
Andres, C
Pourcelot, Y
Martelli, S
机构
[1] Univ Camerino, Dept Chem Sci, I-62032 Camerino, Italy
[2] Univ Lille 2, Fac Pharm, Lille, France
[3] Univ Bourgogne, UFR Pharm, Dijon, France
关键词
acetazolamide; spray drying; polymorphism; compression behaviour; densification behaviour;
D O I
10.1016/S0378-5173(00)00675-X
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Acetazolamide shows a very poor compression ability and tablets must usually be produced through a wet granulation process. However, the possibility to obtain pure acetazolamide for direct compression could be interesting for industrial application. With the scope to obtain a material for direct compression, three different crystallisation methods were chosen, with respect to acetazolamide solvent solubility. (a) Acetazolamide was dissolved in an ammonia solution and then spray dried. It was possible to characterise the spherical particles as a mixture of two polymorphic forms, I and II by Powder X-ray diffraction study. (b) Pure form I was obtained by slowly cooling to room temperature a boiling water solution. (c) Pure form II, the marketed form, was obtained by neutralisation of an ammonia solution. Their compression behaviour was investigated firstly by a rotary press. Whilst pure polymorphic forms I and II could not be compressed, the spray dried particles showed very good compression properties. In fact, tablets were obtained only by spray dried particles, which show very good properties under compression and the absence of capping tendency. On the other hand, it was impossible to obtain tablets from polymorphic forms I and TI, whatever compression pressures were used. In order to explain their densification mechanism, a single-punch tablet machine, equipped for the measurement of the upper punch displacement in the die, was used. From calculated Heckel's parameters, it was demonstrated that the spray dried material shows a greater particle rearrangement in the initial stage of compression due to its spherical habit and minor wrinkledness of particle surface. The crystalline structure due to the presence of polymorphic forms I and II concur to lowering the intrinsic elasticity of the material. fact avoids the risk of the rupturing the interpaticulate bonds, which are formed during the compression, concurring to the consolidation of the tablet. (C) 2001 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:209 / 221
页数:13
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