200
Views
4
CrossRef citations to date
0
Altmetric
Research Article

Incorporation of calcium salts into xanthan gum matrices: hydration, erosion and drug release characteristics

&
Pages 1608-1616 | Received 02 Jul 2014, Accepted 07 Oct 2014, Published online: 05 Nov 2014

References

  • Kadajji V, Betageri GV. Water soluble polymers for pharmaceutical applications. Polymers 2011;3:1972–2009
  • Shah HC, Singh KK. Xanthan gum. In: Rowe RC, Sheskey PJ, Quinn ME, eds. Handbook of pharmaceutical excipients. 6th ed. London: Pharmaceutical Press; 2009:782–5
  • Talukdar MM, Kinget R. Swelling and drug release behaviour of xanthan gum matrix tablets. Int J Pharm 1995;120:63–72
  • Jian H, Zhu L, Zhang W, et al. Galactomannan (from Gleditsia sinensis Lam.) and xanthan gum matrix tablets for controlled delivery of theophylline: in vitro drug release and swelling behaviour. Carbohydr Polym 2012;82:2176–82
  • Sujja-areevath J, Munday DL, Cox PJ, Khan KA. Relationship between swelling, erosion and drug release in hydrophilic natural gum mini-matrix formulations. Eur J Pharm Sci 1998;6:207–17
  • Munday DL, Cox PJ. Compressed xanthan and karaya gum matrices: hydration, erosion and drug release mechanisms. Int J Pharm 2000;203:179–92
  • Billa N, Yuen K-H, Khader MA, Omar A. Gamma-scintigraphic study of the gastrointestinal transit and in vivo dissolution of a controlled release diclofenac sodium formulation in xanthan gum matrices. Int J Pharm 2000;201:109–20
  • Talukdar MM, Van den Mooter G, Augustijns P, et al. In vivo evaluation of xanthan gum as a potential excipient for oral controlled-release matrix tablet formulation. Int J Pharm 1998;169:105–13
  • Vendruscolo CW, Andreazza IF, Ganter JLMS, et al. Xanthan and galactomannan (from M. scabrella) matrix tablets for oral controlled delivery of theophylline. Int J Pharm 2005;296:1–11
  • Baumgartner S, Pavli M, Kristl J. Effect of calcium ions on the gelling and drug release characteristics of xanthan matrix tablets. Eur J Pharm Biopharm 2008;69:698–707
  • Jaipal A, Pandey MM, Abhishek A, et al. Interaction of calcium sulphate with xanthan gum: effect on in vitro bioadhesion and drug release behaviour from xanthan gum based buccal discs of buspirone. Colloid Surf B 2013;111:644–50
  • Bergmann D, Furth G, Mayer C. Binding of bivalent cations by xanthan in aqueous solution. Int J Biol Macromol 2008;43:245–51
  • Dario A, Hortencio L, Sierakowski MR, et al. The effects of calcium salts on the viscosity and adsorption behaviour of xanthan. Carbohydr Polym 2010;84:669–76
  • Wyatt NB, Gunther CM, Liberatore MW. Increasing viscosity in entangled polyelectrolyte solutions by the addition of salt. Polymer 2011;52:2437–44
  • Clarke E, Moffat A. Clarke’s isolation and identification of drugs. 2nd ed. London: Pharmaceutical Press; 1986:343
  • British Pharmacopoeia. British Pharmacopoeia Volume III (Ph Eur monograph 0478: Tablets), 2014, 2 26 [Online]. Available from: www.pharmacopoeia.co.uk [last accessed 26 Feb 2014]
  • Aucoin HR, Wilson NA, Wilson AM, et al. Transport models. Polymer 2013;5:1–5
  • Dash S, Murthy PN, Nath L, Chowdhury P. Kinetic modeling on drug release from controlled drug delivery systems. Acta Pol Pharm 2010;67:217–23
  • Rigway-Watt P, Armstrong AN. Tablet and capsule machine instrumentation. 1st ed. London: Pharmaceutical Press; 2007:182–3
  • Tiwari SB, Rajabi-Siahboomi AR. Extended-release oral drug delivery technologies: monolithic matrix systems. In: Jain KK, ed. Drug delivery systems (methods in molecular biology). 1st ed. Totowa: Humana Press; 2010:223–4
  • Mikac U, Sepe A, Kristl J, Baumgartner S. A new approach combing different MRI methods to provide detailed view on swelling dynamics of xanthan tablets influencing drug release at different pH and ionic strength. J Control Rel 2010;145:247–56
  • Zhong L, Oostrom M, Truex MJ, et al. Rheological behaviour of xanthan gum solution related to shear thinning fluid delivery for subsurface remediation. J Hazard Mater 2013;224:160–70
  • Garcia-Ochoa F, Santos VE, Casas JA, Gomez E. Xanthan gum: production, recovery and properties. Biotech Adv 2000;18:649–79
  • Sworn G. Xanthan gum. In: Philips G, Williams PA, eds. The handbook of hydrocolloids. Cambridge: Woodhead Publishing; 2000:103–15
  • Xu L, Xu G, Liu T, et al. The comparison of rheological properties of aqueous welan gum and xanthan gum solutions. Carbohydr Polym 2013;92:516–22
  • Cunnigham N. Rheology School, 2014 [Online]. Available from: http://www.brookfieldengineering.com/education/rheology [last accessed 29 Jan 2014]
  • Korsmeyer RW, Gurny R, Doelker EM, et al. Mechanism of solute release from porous hydrophilic polymers. Int J Pharm 1983;15:25–35
  • Costa P, Lobo JMS. Modelling and comparison of dissolution profiles. Eur J Pharm Sci 2001;13:123–33
  • Siepmann J, Siepmann F. Mathematical modelling of drug delivery. Int J Pharm 2008;364:328–43
  • Mundargi RC, Patil SA, Agnihotri SA, Aminabhavi TM. Development of polysaccharide-based colon targeted drug delivery systems for the treatment of amoebiasis. Drug Del Ind Pharm 2007;33:255–64
  • Phaechamud T, Ritthidej GC. Sustained-release from layered matrix system comprising chitosan and xanthan gum. Drug Dev Ind Pharm 2007;33:595–605
  • Moroni A, Drefko W, Thone G. Formulations of zero-order, pH-dependent, sustained release matrix systems by ionotropic gelation of alginate-containing mixtures. Drug Dev Ind Pharm 2011;37:216–24
  • Moreton RC. Calcium phosphate, dibasic anhydrous. In: Rowe RC, Sheskey PJ, Quinn ME, eds. Handbook of pharmaceutical excipients. 6th ed. London: Pharmaceutical Press; 2009:94–6
  • Moreton RC. Calcium sulphate. In: Rowe RC, Sheskey PJ, Quinn ME, eds. Handbook of pharmaceutical excipients. 6th ed. London: Pharmaceutical Press; 2009:105–7
  • Pellett MA. Calcium chloride. In: Rowe RC, Sheskey PJ, Quinn ME, eds. Handbook of pharmaceutical excipients. 6th ed. London: Pharmacutical Press; 2009:89–90
  • Allwood M, Kearney MC. Compatibility and stability of additives in parenteral nutrition admixtures. Nutrition 1998;14:697–706

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.