Next Article in Journal
Lectin-Grafted PLGA Microcarriers Loaded with Fluorescent Model Drugs: Characteristics, Release Profiles, and Cytoadhesion Studies
Previous Article in Journal
HPLC Analysis and Cytotoxicity of n-Butanol Extract from Glyphaea brevis Roots Against C6 Glioma Cells
 
 
Scientia Pharmaceutica is published by MDPI from Volume 84 Issue 3 (2016). Previous articles were published by another publisher in Open Access under a CC-BY (or CC-BY-NC-ND) licence, and they are hosted by MDPI on mdpi.com as a courtesy and upon agreement with Austrian Pharmaceutical Society (Österreichische Pharmazeutische Gesellschaft, ÖPhG).
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Dissolution Improvement of Atorvastatin Calcium using Modified Locust Bean Gum by the Solid Dispersion Technique

by
Dharmila PANGHAL
,
Manju NAGPAL
*,
Gurjeet Singh THAKUR
and
Sandeep ARORA
Chitkara College of Pharmacy, Chitkara University, Chandigarh- Patiala National Highway, Rajpura-140401, Punjab, India
*
Author to whom correspondence should be addressed.
Submission received: 28 January 2013 / Accepted: 9 December 2013 / Published: 9 December 2013

Abstract

The present research was aimed at the enhancement of the dissolution rate of atorvastatin calcium by the solid dispersion technique using modified locust bean gum. Solid dispersions (SD) using modified locust bean gum were prepared by the modified solvent evaporation method. Other mixtures were also prepared by physical mixing, co-grinding, and the kneading method. The locust bean gum was subjected to heat for modification. The prepared solid dispersions and other mixtures were evaluated for equilibrium solubility studies, content uniformity, FTIR, DSC, XRD, in vitro drug release, and in vivo pharmacodynamic studies. The equilibrium solubility was enhanced in the solid dispersions (in a drug:polymer ratio of 1:6) and other mixtures such as the co-grinding mixture (CGM) and kneading mixture (KM). Maximum dissolution rate was observed in the solid dispersion batch SD3 (i.e. 50% within 15 min) with maximum drug release after 2 h (80%) out of all solid dispersions. The co-grinding mixture also exhibited a significant enhancement in the dissolution rate among the other mixtures. FTIR studies revealed the absence of drug-polymer interaction in the solid dispersions. Minor shifts in the endothermic peaks of the DSC thermograms of SD3 and CGM indicated slight changes in drug crystallinity. XRD studies further confirmed the results of DSC and FTIR. Topological changes were observed in SEM images of SD3 and CGM. In vivo pharmacodynamic studies indicated an improved efficacy of the optimized batch SD3 as compared to the pure drug at a dose of 3 mg/kg/day. Modified locust bean gum can be a promising carrier for solubility enhancement of poorly water-soluble drugs. The lower viscosity and wetting ability of MLBG, reduction in particle size, and decreased crystallinity of the drug are responsible for the dissolution enhancement of atorvastatin. The co-grinding mixture can be a good alternative to solid dispersions prepared by modified solvent evaporation due to its ease of preparation and significant improvement in dissolution characteristics.
Keywords: Modified locust bean gum; Solvent evaporation; Solid dispersion; Co-grinding mixture; Content uniformity Modified locust bean gum; Solvent evaporation; Solid dispersion; Co-grinding mixture; Content uniformity

Share and Cite

MDPI and ACS Style

PANGHAL, D.; NAGPAL, M.; THAKUR, G.S.; ARORA, S. Dissolution Improvement of Atorvastatin Calcium using Modified Locust Bean Gum by the Solid Dispersion Technique. Sci. Pharm. 2014, 82, 177-192. https://0-doi-org.brum.beds.ac.uk/10.3797/scipharm.1301-23

AMA Style

PANGHAL D, NAGPAL M, THAKUR GS, ARORA S. Dissolution Improvement of Atorvastatin Calcium using Modified Locust Bean Gum by the Solid Dispersion Technique. Scientia Pharmaceutica. 2014; 82(1):177-192. https://0-doi-org.brum.beds.ac.uk/10.3797/scipharm.1301-23

Chicago/Turabian Style

PANGHAL, Dharmila, Manju NAGPAL, Gurjeet Singh THAKUR, and Sandeep ARORA. 2014. "Dissolution Improvement of Atorvastatin Calcium using Modified Locust Bean Gum by the Solid Dispersion Technique" Scientia Pharmaceutica 82, no. 1: 177-192. https://0-doi-org.brum.beds.ac.uk/10.3797/scipharm.1301-23

Article Metrics

Back to TopTop