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正交晶型扑热息痛的压缩行为。

Compression behavior of orthorhombic paracetamol.

作者信息

Joiris E, Di Martino P, Berneron C, Guyot-Hermann A M, Guyot J C

机构信息

Laboratoire de Pharmacotechnie industrielle, Faculté des Sciences Pharmaceutiques et Biologiques de Lille II, France.

出版信息

Pharm Res. 1998 Jul;15(7):1122-30. doi: 10.1023/a:1011954800246.

Abstract

PURPOSE

Orthorhombic crystals of paracetamol exhibit good technological properties during compression. The purpose of this study was to investigate the compression behavior of this substance and to compare it to that of monoclinic paracetamol. From the crystal structure, it could be hypothesized that sliding planes are present in the orthorhombic form, and could be responsible for an increase in crystal plasticity.

METHODS

Compression of pure orthorhombic or monoclinic paracetamol tablets was carried out on a fully instrumented single punch machine. Data was used to establish Heckel's profiles. Images of compressed crystals were obtained by scanning electron microscopy.

RESULTS

Tabletability of the orthorhombic crystals was far better than that of the monoclinic ones, and capping was not observed even at high compression pressure. Compared to the monoclinic form, orthorhombic paracetamol exhibited greater fragmentation at low pressure, increased plastic deformation at higher pressure, and lower elastic recovery during decompression. Plastic behavior was confirmed by SEM - micrographs showing that crystals folded under pressure. A compactibility study showed that the nature of interparticle bonds was similar for both polymorphs, the number of bonds being greater for orthorhombic paracetamol.

CONCLUSIONS

Unlike the monoclinic form, orthorhombic paracetamol is suitable for the direct compression process. The crystalline structure accounts for its better compression behavior, because of the presence of sliding planes.

摘要

目的

对乙酰氨基酚的正交晶体在压制过程中表现出良好的工艺性能。本研究的目的是研究该物质的压制行为,并将其与单斜对乙酰氨基酚的压制行为进行比较。从晶体结构可以推测,正交晶型中存在滑移面,这可能导致晶体可塑性增加。

方法

在一台完全仪器化的单冲压片机上对纯正交或单斜对乙酰氨基酚片剂进行压制。数据用于建立赫克尔曲线。通过扫描电子显微镜获得压缩晶体的图像。

结果

正交晶体的可压性远优于单斜晶体,即使在高压力下也未观察到裂片现象。与单斜晶型相比,正交对乙酰氨基酚在低压下表现出更大的破碎率,在高压下塑性变形增加,在减压过程中弹性回复率降低。扫描电子显微镜照片证实了塑性行为,照片显示晶体在压力下发生折叠。一项压缩性研究表明,两种多晶型物的颗粒间键的性质相似,正交对乙酰氨基酚的键数更多。

结论

与单斜晶型不同,正交对乙酰氨基酚适用于直接压片工艺。晶体结构决定了其更好的压制行为,这是由于存在滑移面。

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