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A study of compressibility and compactibility of directly compressible tableting materials containing tramadol hydrochloride Cover

A study of compressibility and compactibility of directly compressible tableting materials containing tramadol hydrochloride

Open Access
|Jun 2016

References

  1. 1. P. Colombo, P. Santi et al., Swellable and Rigid Matrices: Controlled Release Matrices with Cellulose Ethers, in Pharmaceutical Dosage Forms: Tablets (Eds. L. L. Augsburger, S. W. Hoag), Informa Healthcare USA, Inc., New York 2008, pp. 433-468.
  2. 2. B. A. C. Carlin, Direct Compression and the Role of Filler Binders, in Pharmaceutical Dosage Forms: Tablets (Eds. L. L. Augsburger and S. W. Hoag), 3th ed., Vol. 2, Informa Healthcare USA, Inc., New York 2008, pp. 173-216.
  3. 3. P. Gupta, S. T. Nachaegari and A. K. Bansal, Improved Excipients Functionality by Coprocessing, in Excipient Development for Pharmaceutical, Biotechnology and Drug Delivery Systems (Eds. A. Katdare, M. V. Chaubal), Informa Healthcare USA, Inc., New York 2006, pp. 109-126.10.1201/9781420004137.ch9
  4. 4. S. Kamel, N. Ali, K. Jahangir, S. M. Shah and A. A. El-Gendy, Pharmaceutical significance of cellulose: A Review, xXPRESS Polymer Letters 2 (2008) 758-778; DOI: 10.3144/expresspolymlett.2008.90.10.3144/expresspolymlett.2008.90
  5. 5. K. Kachrimanis, I. Nikolakakis and S. Malamataris, Tensile strength and disintegration of tableted silicified microcrystalline cellulose: Influences of interparticle bonding, J. Pharm. Sci. 92 (2003) 1489-1501; DOI: 10.1002/jps.10403.10.1002/jps.1040312820153
  6. 6. J. A. Zeleznik and J. Renak, High Functionality Excipients (HFE) - PROSOLV® SMCC as an effective strategy for generic drug formulation, Business Briefing, Pharmagenerics, (2004) 1-4.
  7. 7. B. E. Sherwood and J. W. Becker, A new class of high-functionality excipients: Silicified microcrystalline cellulose, Pharm. Tech. 22 (1998) 77-88.
  8. 8. KERRY, Disintequik™ MCC 25, Product document; http://www.sheffieldbioscience.com/disintequik_MCC25/; access date March 28, 2015.
  9. 9. J. S. M. Garr and M. H. Rubinstein, Compaction properties of cellulose-lactose direct-compression excipient, Pharm. Technol. Int. 3 (1991) 24-27.
  10. 10. R. J. Hardwood, Hydroxypropyl Methylcellulose, in Handbook of Pharmaceutical Excipients (Eds. A. H. Kibe, A. Wade et al.), American Pharmaceutical Association and Pharmaceutical Press, Washington 2000, pp. 252-255.
  11. 11. G. Ragnarsson, Force-displacement and Network Measurements, in Pharmaceutical Powder Compaction Technology (Eds. G. Alderborn and Ch. Nyström), Marcel Dekker Inc., New York 1996, pp. 77-96.
  12. 12. A. Stamm and C. Mathis, Verpressbarkeit von festen Hilfsstoffen für Direkttablettierung, Acta Pharm. Technol. 22 (1976) 7-16.
  13. 13. J. T. Fell and J. M. Newton, Determination of tablet strength by diametral compression test, J. Pharm. Sci. 59 (1970) 688-691; DOI: 10.1002/jps.2600590523.10.1002/jps.26005905235446428
  14. 14. V. A. Belousov, Choice of optimal pressure values in tableting medicinal powders, Khim. Farm. Zh. 10 (1976) 105-111.
DOI: https://doi.org/10.1515/acph-2016-0034 | Journal eISSN: 1846-9558 | Journal ISSN: 1330-0075
Language: English
Page range: 433 - 441
Accepted on: Jan 11, 2016
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Published on: Jun 29, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
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© 2016 Jitka Mužíková, Alena Kubíčková, published by Croatian Pharmaceutical Society
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.