Back to Search

Controlled Release Nifedipine Microparticles from Starch Acetate

AUTHOR Mukherjee, Swarupananda
PUBLISHER LAP Lambert Academic Publishing (11/03/2010)
PRODUCT TYPE Paperback (Paperback)

Description
The present investigation involves development of a CR Nifedipine microparticulate system utilizing starch acetate as the rate controlling polymer. SA was manufactured in house form native starches and characterization for degree of substitution (dS) and acetyl content among other parameters. An emulsification solvent evaporation technique was followed to develop microparticles of varying drug- polymer ratio's with triethyl citrate plasticizers at different levels. The prepared microparticles were subjected to standard evaluation such as yield, particle size, surface topography, drug content and in vitro dissolution studies.The development formulations were subsequently optimized through a simplex lattice mixture design to predict the optimum formulations matching the target official release profiles. It was found that two blend of development formulations, namely F1: F5 (0.822:0.1780) and F5: F13 (0.041:0.959) could closely resemble official specification and hence were optimum. The developed multiparticulate systems of Nifedipine are expected to provide a better clinical option for treatment of persistent/chronic angina and hypertension.
Show More
Product Format
Product Details
ISBN-13: 9783843368247
ISBN-10: 3843368244
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
More Product Details
Page Count: 112
Carton Quantity: 70
Product Dimensions: 6.00 x 0.27 x 9.00 inches
Weight: 0.39 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Technology & Engineering | Chemical & Biochemical
Descriptions, Reviews, Etc.
publisher marketing
The present investigation involves development of a CR Nifedipine microparticulate system utilizing starch acetate as the rate controlling polymer. SA was manufactured in house form native starches and characterization for degree of substitution (dS) and acetyl content among other parameters. An emulsification solvent evaporation technique was followed to develop microparticles of varying drug- polymer ratio's with triethyl citrate plasticizers at different levels. The prepared microparticles were subjected to standard evaluation such as yield, particle size, surface topography, drug content and in vitro dissolution studies.The development formulations were subsequently optimized through a simplex lattice mixture design to predict the optimum formulations matching the target official release profiles. It was found that two blend of development formulations, namely F1: F5 (0.822:0.1780) and F5: F13 (0.041:0.959) could closely resemble official specification and hence were optimum. The developed multiparticulate systems of Nifedipine are expected to provide a better clinical option for treatment of persistent/chronic angina and hypertension.
Show More
Your Price  $62.84
Paperback