THE EFFECTS OF SLUGGING AND RECOMPRESSION ON PHARMACEUTICAL EXCIPIENTS

被引:24
|
作者
KOCHHAR, SK
RUBINSTEIN, MH
BARNES, D
机构
[1] LIVERPOOL JOHN MOORES UNIV,SCH PHARM,LIVERPOOL L3 3AF,MERSEYSIDE,ENGLAND
[2] PFIZER LTD,CENT RES,SANDWICH CT13 9NJ,KENT,ENGLAND
关键词
WORK HARDENING; SLUGGING; RECOMPRESSION; MEAN YIELD PRESSURE; MICROCRYSTALLINE CELLULOSE; DIBASIC CALCIUM PHOSPHATE; STARCH; 1500;
D O I
10.1016/0378-5173(94)00250-9
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Slugs of microcrystalline cellulose (MCC), dibasic calcium phosphate (DCP) and Starch 1500 were compressed, either on their own or in various combinations, between 12.7 mm flat faced punches on a single punch tableting machine at 10 different pressures. 10 tablets of each batch were compressed and the crushing strengths for five were determined. The remaining slugs were screened through an oscillating granulator and recompressed at the same pressure used initially. The crushing strengths of the final tablets were again determined. The mean yield pressures were evaluated for the slugs utilizing Heckel analysis. The results indicated that the hardest tablets were produced using 75% MCC:25% DCP. The mean yield pressure values showed that on addition of a further excipient to MCC there is a move away from predominantly plastic deformation. This was very noticeable with blends of MCC and DCP. The latter excipient has a high mean yield pressure value which implies that it is a brittle material which deforms by fragmentation. It would seem that fragmentation of DCP within the 75% MCC:25% DCP blend enhances bonding on compaction and so leads to increased crushing strength. However, for all slugged tablets there was a reduction in the crushing strength of the tablet after the second compression for all the materials investigated. The blends consisting of Starch 1500 showed less of a reduction in the crushing strength than the other excipient blends. These results in general would indicate that the extent of plastic deformation is less when the materials are compressed twice, compared to when they are compacted once. It was concluded that the slugging process is therefore independent of an increase in dwell time.
引用
收藏
页码:35 / 43
页数:9
相关论文
共 50 条
  • [31] The Effects of Pharmaceutical Excipients on Gastrointestinal Tract Metabolic Enzymes and Transporters—an Update
    Wenpeng Zhang
    Yanyan Li
    Peng Zou
    Man Wu
    Zhenqing Zhang
    Tao Zhang
    The AAPS Journal, 2016, 18 : 830 - 843
  • [32] Pharmaceutical excipients with potential to cause adverse effects in paediatric nasal medicines
    Stjepanovic, Ana N.
    Todorovic, Nemanja B.
    Tesic, Tamara Z.
    Canji-Panic, Jelena M.
    Lalic-Popovic, Mladena N.
    Komazec, Zoran S.
    REGULATORY TOXICOLOGY AND PHARMACOLOGY, 2022, 133
  • [33] Wall friction and its effects on the density distribution in the compaction of pharmaceutical excipients
    Michrafy, A
    Kadiri, MS
    Dodds, JA
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2003, 81 (A8): : 946 - 952
  • [34] Genotoxic impurities in excipients: regulatory implications for International Pharmaceutical Excipients Council
    Mroz, C.
    JOURNAL OF PHARMACY AND PHARMACOLOGY, 2007, 59 : A78 - A79
  • [35] Compritol and precirol: Innovative pharmaceutical excipients
    Madgulkar, A. R.
    Bhalekar, M.
    Shiradkar, M. R.
    Damle, M.
    Rode, R.
    ASIAN JOURNAL OF CHEMISTRY, 2007, 19 (01) : 454 - 458
  • [36] From inactive ingredients to pharmaceutical excipients
    Steinberg, M.
    Blecher, L.
    Mercill, A.
    Pharmaceutical Technology, 2001, 25 (07): : 62 - 64
  • [37] Amorphization of itraconazole by inorganic pharmaceutical excipients: comparison of excipients and processing methods
    Grobelny, Pawel
    Kazakevich, Irina
    Zhang, Dan
    Bogner, Robin
    PHARMACEUTICAL DEVELOPMENT AND TECHNOLOGY, 2015, 20 (01) : 118 - 127
  • [38] Cyclodextrins: More than Pharmaceutical Excipients
    Otero-Espinar, F. J.
    Luzardo-Alvarez, A.
    Blanco-Mendez, J.
    MINI-REVIEWS IN MEDICINAL CHEMISTRY, 2010, 10 (08) : 715 - 725
  • [39] Thermal properties of compacted pharmaceutical excipients
    Krok, Alexander
    Vitorino, Nuno
    Zhang, Jianyi
    Frade, Jorge Ribeiro
    Wu, Chuan-Yu
    INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2017, 534 (1-2) : 119 - 127
  • [40] Advances in polysaccharide nanocrystals as pharmaceutical excipients
    Si, Yanxue
    Luo, Huize
    Zhou, Fengshan
    Bai, Xinyi
    Han, Lu
    Sun, Huimin
    Cha, Ruitao
    CARBOHYDRATE POLYMERS, 2021, 262