Acta Pharm. 58 (2008) 221-231
Short communication
Gastric floating matrix tablets: Design and optimization using
combination of polymer
SHAILESH
T. PRAJAPATI, LAXMANBHAI D. PATEL and DASHARATH M. PATEL
stprajapati@gmail.com
Department of Pharmaceutics, Shri Sarvajanik
Pharmacy College, Mehsana-384001, Gujarat, India
Department of Pharmaceutics, DDIT Pharmacy
College, Nadiad-387001, Gujarat, India
Accepted April 3, 2008
The purpose of the present study
was to develop an optimized gastric floating drug delivery system (GFDDS)
containing domperidone as a model drug. Box-Behnken
design was employed in formulating the GFDDS with three polymers: hydroxypropyl methylcellulose K4M (HPMC K4M)
(X1), Carbopol 934P (X2) and sodium alginate (X3),
as independent variables. Floating lag time (FLT), total floating time (TFT),
time required to release 50% of the drug (t50) and diffusion
exponent (n) were selected as dependent variables. Seventeen
formulations were prepared, dissolution data obtained was fitted to the power
law and floating profiles were analyzed. HPMC loading was found to be
significant for floating properties. Carbopol loading had a negative effect on
floating properties but was found helpful in controlling the release rate of the
drug. No significant effect of sodium alginate on floating properties was
observed but it was important for gel formation. The quadratic mathematical
model developed could be used to predict formulations with desired release and
floating properties.
Keywords: domperidone, floating matrix
tablet, Box-Behnken design, GFDDS, release kinetics