Sodium alginate microspheres for extending drug release: formulation and in vitro evaluation

Authors

  • M L Soni drkpnamdeo@yahoo.in
  • M Kumar Dr. K.P. Namdeo S.L.T. Institute of Pharmaceutical Sciences Guru Ghasidas University, Bilaspur (C.G.) 495009 India
  • K P Namdeo Dr. K.P. Namdeo S.L.T. Institute of Pharmaceutical Sciences Guru Ghasidas University, Bilaspur (C.G.) 495009 India

Keywords:

Extended drug delivery, Sodium alginate, Microspheres, Bronchial asthma

Abstract

In the present study, spherical microspheres of theophylline (TP) using sodium alginate as the hydrophilic carrier were prepared to prolong the release. The shape, surface and size characteristics were determined by scanning electron microscopy. The microspheres were found to be discreet and spherical in shape and had a smoother surface. The mean diameter of seven alginate microspheres formulations were between 7.6 ± 0.52 and 22.35 ±0.31 μm. It was observed that mean particle size of the microspheres increased with an increase in the concentration of polymer. The entrapment efficiency was found to be in the range of 70–93%. Optimized alginate microspheres were found to possess good sphericity, size and adequate entrapment efficiency. The in vitro release studies were carried out in pH progression media (pH 1.2, 2.5, 4.5, 7 and 7.4 solutions). Results indicated that percent drug release decreased with an increased alginate concentration. TP-loaded Alginate microspheres showed extended in vitro drug release thus use of microspheres potentially offers sustained release profile along with improved delivery

References

Anal A. K. Time-controlled pulsatile delivery

systems for bioactive compounds. Recent Pat

Drug Deliv Formul. 2007; 1:73-79.

Takka, S., Acarturk, F. Calcium alginate

microparticles for oral administration: I: Effect of

sodium alginate type on drug release and drug

entrapment efficiency. J Microencapsul. 1999; 16:

-290.

Coviello T., Grassi M., Palleschi A., Bocchinfuso

G., Coluzzi G., Banishoeib F. and Alhaique, F. A

new scleroglucan/borax hydrogel: swelling and

drug release studies. Int J Pharm. 2005; 289: 97-

Jain A., Gupta Y. and Jain S. K. Perspectives of

biodegradable natural polysaccharides for sitespecific drug delivery to the colon. J Pharm Pharm

Sci. 2007; 10: 86-128.

Chen L. and Subirade M. Alginate-whey protein

granular microspheres as oral delivery vehicles for

bioactive compounds. Biomaterials 2006; 27: 4646-

Momeni A. and Mohammadi M. H. Respiratory

delivery of Theophylline by size-targeted starch

microspheres for treatment of asthma. J

Microencapsul. 2009; 26: 701-710.

Shiohira H., Fujii M., Koizumi N., Kondoh M. and

Watanabe, Y. Novel chronotherapeutic rectal

aminophylline delivery system for therapy of

asthma. Int J Pharm. 2009; 379: 119-124.

Rodriguez M., Vila-Jato J. L. and Torres D. Design

of a new multiparticulate system for potential sitespecific and controlled drug delivery to the colonic

region. J Control Release. 1998; 55: 67-77.

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Published

2010-03-31

How to Cite

M L Soni, M Kumar, & K P Namdeo. (2010). Sodium alginate microspheres for extending drug release: formulation and in vitro evaluation. International Journal of Drug Delivery, 2(1), 64–68. Retrieved from https://ijdd.arjournals.org/index.php/ijdd/article/view/13

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Section

Original Research Articles