editor@ajptr.com
9409046853
e-ISSN: 2249-3387
logo

American Journal of PharmTech Research test

Published

Design and Evaluation of Sodium Alginate Based Microspheres Loaded With Misoprostal

Published in February 2017 Issue 1 (Vol. 7, Issue 1, 2017)

Design and Evaluation of Sodium Alginate Based Microspheres Loaded With Misoprostal - Issue cover

Abstract

In the present investigation efforts were made to develop Misoprostal loaded microspheres to obtain a desirable drug release profile by Ionic gelation method using hydrophilic polymers and cross linking agent to decrease the gastric irritation and to enhance the drug penetration. Microspheres were prepared by using sodium alginate and calcium chloride in different ratios.  All the microspheres were evaluated for particle size, percentage yield, drug entrapment efficiency, stability studies and for in vitro release kinetics and found to be within the limits. Among all the formulations S7 was selected as optimized formulation based on the physico chemical properties and drug release studies. In vitro drug release study of formulation S7 showed 97.17% drug release up to 12h in a controlled manner, which is essential for an anti ulcer therapy. The innovator Misoprostal marketed product shows the drug release of 95.23 in 1 h. The drug release of optimized formulation S7 followed zero order release and Higuchi kinetics indicating diffusion controlled drug release. FT- IR study showed no drug excipient interaction takes place.

Authors (2)

D.V. R. N. Bhikshapathi

View all publications →

Download Article

PDF

Best for printing and citation

File size: 0.0 MB
Format: PDF

Download Article

PDF

Best for printing and citation

File size: 0.0 MB
Format: PDF

Article Information

AJPTR71047

AJPTR-01-000736

2017-02-01

Article Impact

Views:1,993
Downloads:1,672

How to Cite

Ranjith, K., & D.V. R. N. Bhikshapathi (2017). Design and Evaluation of Sodium Alginate Based Microspheres Loaded With Misoprostal. American Journal of PharmTech Research test, 7(1), xx-xx. https://ajptr.com/articles/AJPTR71047

Article Actions

Whatsapp