Effects of drug solubility on the release kinetics of water soluble and insoluble drugs from HPMC based matrix formulations
Open Access
|Oct 2009References
- P. Colombo, R. Bettini, G. Massimo, P. L. Catellani, P. Santi and N. A. Peppas, Drug diffusion front movement is important in drug release control from swellable matrix tablets,84 (1995) 991-997; DOI: 10.1002/jps.2600840816.
- , A. F. Kydonieus (Ed.), Vol. 1, CRC Press, Boca Raton 1980.
- F. Viega, T. Salsa and E. Pina, Oral controlled release dosage forms. II. Glassy polymers in hydrophilic matrices,24 (1998) 1-9; DOI: 10.3109/03639049809082346.
- D. A. Alderman, A review of cellulose ethers in hydrophilic matrices for oral controlled-release dosage forms,5 (1984) 1-9.
- M. R. Siahi, M. B. Jalali, F. Monajjemzadeh, F. Ghaffari and S. Azarmi, Design and evaluation of 1- and 3-layer matrices of verapamil hydrochloride for sustaining its release,4 (2005) 626-632; DOI: 10.1208/pt060477.
- T. Higuchi, Mechanism of sustained-action medication. Theoretical analysis of rate of release of solid drugs dispersed in solid matrices,52 (1963) 1145-1149; DOI: 10.1002/jps.2600521210.
- P. L. Ritger and N. A. Peppas, A simple equation for description of solute release II. Fickian and anomalous release from swellable devices,5 (1987) 37-42; DOI: 10.1016/0168-3659(87)90035-6.
- R. W. Korsmeyer, R. Gurny, E. Docler, P. Buri and N. A. Peppas, Mechanism of solute release from porous hydrophilic polymers,15 (1983) 25-35; DOI: 10.1016/0378-5173(83)90064-9.
- R. Reynold, S. N. Gehree, A. S. Hussain and L. S. Shenonda, Polymer erosion and drug release characterization of hydroxypropyl methylcellulose matrices,87 (1998) 1115-1123; DOI: 10.1021/js980004q.
- M. Jivraj, L. G. Martini and C. M. Thomson, An overview of different excipients useful for direct compression of tablets,3 (2000) 58-63; DOI: 10.1016/S1461-5347(99)00237-0.
- N. K. Ebube, A. Hikal, C. M. Wyandt, D. C. Beer, L. G. Miller and A. B. Jones, Sustained release of acetaminophen from heterogeneous matrix tablets: influence of polymer ratio, polymer loading and co-active on drug release,2 (1997) 161-170; DOI: 10.3109/10837459709022621.
- P. R. Katikaneni, S. M. Upadrashia, S. H. Neau and A. K. Mitra, Ethyl cellulose matrix controlled-release tablets of a water soluble drug,123 (1995) 119-125; DOI: 10.1016/0378-5173(95)00060-V.
- A. Avachat and V. Kotwal, Design and evaluation of matrix-based controlled release tablets of diclofenac sodium and chondroitin sulphate,8 (2007) 51-56; DOI: 10.1208/pt0804088.
- A. Kuksal, A. K. Tiwary, N. K. Jain and S. Jain, Formulation and in vitro, in vivo evaluation of extended-release matrix tablet of zidovudine: Influence of combination of hydrophilic and hydrophobic matrix formers,7 (2006) Article 1; DOI: 10.1208/pt070101.
- M. Efentakis and A. Koutlis, Release of furosemide from multiple unit and single unit preparations containing different viscosity grades of sodium alginate,6 (2001) 91-98; DOI: 10.1081/PDT-100000048.
- J. E. Mockel and B. C. Lippold, Zero order release from hydrocolloid matrices,10 (1993) 1066-1070; DOI: 10.1023/A:1018931210396.
Language: English, Croatian
Page range: 313 - 323
Published on: Oct 9, 2009
Published by: Croatian Pharmaceutical Society
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2009 Santanu Chakraborty, Madhusmruti Khandai, Anuradha Sharma, Ch. Patra, V. Patro, Kalyan Sen, published by Croatian Pharmaceutical Society
This work is licensed under the Creative Commons License.