610
Views
35
CrossRef citations to date
0
Altmetric
Research Article

Tableting properties of silica aerogel and other silicates

, , , &
Pages 462-467 | Received 02 Jan 2011, Accepted 04 Aug 2011, Published online: 01 Oct 2011

References

  • Tomas J, Kleinschmidt S. (2009). Improvement of flowability of fine cohesive powders by flow additives. Chem Eng Technol, 32:1470–83.
  • Augsburger LL, Shangraw RF. (1966). Effect of glidants in tableting. J Pharm Sci, 55:418–423.
  • Hentzschel CM, Sakmann A, Leopold CS. (2011). Suitability of various excipients as carrier and coating materials for liquisolid compacts. Drug Dev Ind Pharm, DOI: 10.3109/03639045.2011.564184.
  • Gold G, Duvall RN, Palermo BT, Slater JG. (1966). Powder flow studies. II. Effect of glidants on flow rate and angle of repose. J Pharm Sci, 55:1291–1295.
  • FrickeJ, Tillotson T. (1997). Aerogels: Production, characterization, and applications. Thin Solid Films, 297:212–23.
  • SmirnovaI, Suttiruengwong S, Arlt W. (2004). Feasibility study of hydrophilic and hydrophobic silica aerogels as drug delivery systems. J Non-Cryst Solids, 350:54–60.
  • Smirnova I, Suttiruengwong S, Seiler M, Arlt W. (2004). Dissolution rate enhancement by adsorption of poorly soluble drugs on hydrophilic silica aerogels. Pharm Dev Technol, 9:443–452.
  • Smirnova I, Tuerk M, Wischumerski R, Wahl MA. (2005). Comparison of different methods for enhancing the dissolution rate of poorly soluble drugs: case of griseofulvin. Eng Life Sci, 5:277–80.
  • Bahl D, Bogner RH. (2006). Amorphization of Indomethacin by Co-Grinding with Neusilin US2: amorphization kinetics, physical stability and mechanism. Pharm Res, 23:2317–2325.
  • Gupta MK, Vanwert A, Bogner RH. (2003). Formation of physically stable amorphous drugs by milling with Neusilin. J Pharm Sci, 92:536–551.
  • Bahl D, Hudak J, Bogner RH. (2008). Comparison of the ability of various pharmaceutical silicates to amorphize and enhance dissolution of indomethacin upon co-grinding. Pharm Dev Technol, 13:255–269.
  • Gupta MK, Bogner RH, Goldman D, Tseng YC. (2002). Mechanism for further enhancement in drug dissolution from solid-dispersion granules upon storage. Pharm Dev Technol, 7:103–112.
  • Gupta MK, Tseng YC, Goldman D, Bogner RH. (2002). Hydrogen bonding with adsorbent during storage governs drug dissolution from solid-dispersion granules. Pharm Res, 19:1663–1672.
  • Konno T, Kinuno K, Kataoka K. (1986). Physical and chemical changes of medicinals in mixtures with adsorbents in the solid state. I. Effect of vapor pressure of the medicinals on changes in crystalline properties. Chem Pharm Bull, 34:301–307.
  • Hentzschel CM, Alnaief M, Smirnova I, Sakmann A, Leopold CS. (2011). Enhancement of griseofulvin release from hydrophilic aerogel formulations and liquisolid compacts. Eur J Pharm Biopharm. DOI: 10.1016/j.ejpb.2011.08.001.
  • Ito Y, Arai H, Uchino K, Iwasaki K, Shibata N, Takada K. (2005). Effect of adsorbents on the absorption of lansoprazole with surfactant. Int J Pharm, 289:69–77.
  • Ito Y, Kusawake T, Prasad YV, Sugioka N, Shibata N, Takada K. (2006). Preparation and evaluation of oral solid heparin using emulsifier and adsorbent for in vitro and in vivo studies. Int J Pharm, 317:114–119.
  • Sander C, Holm P. (2009). Porous magnesium aluminometasilicate tablets as carrier of a cyclosporine self-emulsifying formulation. AAPS PharmSciTech, 10:1388–1395.
  • Yuasa H, Asahi D, Takashima Y, Kanaya Y, Shinozawa K. (1994). Application of calcium silicate for medicinal preparation. I. Solid preparation adsorbing an oily medicine to calcium silicate. Chem Pharm Bull, 42:2327–2331.
  • Alnaief M, Smirnova I. (2010). Effect of surface functionalization of silica aerogel on their adsorptive and release properties. J Non-Cryst Solids, 356:1644–1649.
  • Brunauer S, Emmet PH, Teller E. (1938). Adsorption of gases in multimolecular layers. J Am Chem Soc, 60:309–319.
  • Fell JT, Newton JM. (1968). The tensile strength of lactose tablets. J Pharm Pharmacol, 20:657–659.
  • Heckel RW. (1961). An analysis of powder compaction phenomena. Trans Metall Soc AIME, 221:1001–1008.
  • Heckel RW. (1961). Density-pressure relationships in powder compaction. Trans Metall Soc AIME, 221:671–675.
  • Celik M. (1992). Overview of compaction data analysis techniques. Drug Dev Ind Pharm, 18:767–810.
  • Alnaief M, Smirnova I. (2011). In situ production of spherical aerogel microparticles. J Supercrit Fluids, 55:1118–1123.
  • Duberg M, Nystroem C. (1986). Studies on direct compression of tablets. XVII. Porosity-pressure curves for the characterization of volume reduction mechanisms in powder compression. Powder Technol, 46:67–75.
  • Iloañusi NO, Schwartz JB. (1998). The effect of wax on compaction of microcrystalline cellulose beads made by extrusion and spheronization. Drug Dev Ind Pharm, 24:37–44.
  • David ST, Augsburger LL. (1977). Plastic flow during compression of directly compressible fillers and its effect on tablet strength. J Pharm Sci, 66:155–159.
  • Garr JSM, Rubinstein MH. (1991). The effect of rate of force application on the properties of microcrystalline cellulose and dibasic calcium phosphate mixtures. Int J Pharm, 73:75–80.

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.