Box-Behnken design for development and characterization of nanostructured chitosan-based nanoparticles containing sulfasalazine for the treatment of ulcerative colitis

Ganesh Narayan Sharma (1) , Praveen Kumar C H (2) , Birendra Shrivastava (3) , Kumar B (4) , Arindam Chatterjee (5)
(1) Department of Pharmacology, School of Pharmaceutical Sciences, Jaipur National University, Jagatpura-302017, Jaipur, India, India ,
(2) Research Scholar, School of Pharmaceutical Sciences, Jaipur National University, Jagatpura-302017, Jaipur, India, India ,
(3) School of Pharmaceutical Sciences, Jaipur National University, Jagatpura-302017, Jaipur, India, India ,
(4) Department of Pharmaceutics, Ratnam Institute of Pharmacy, Muthukur (M), Nellore -524346, Andhra Pradesh, India, India ,
(5) Department of Pharmaceutics, School of Pharmaceutical Sciences, Jaipur National University, Jagatpura-302017, Jaipur, India, India

Abstract

The present research was designed to improve the permeability of sulfasalazine by loading it into chitosan nanoparticles using the ionic gelation method. The process parameters were screened and optimized through Box-Behnken design. 13 formulations containing sulfasalazine chitosan-based nanoparticles (SCSNPs) were optimized using particle size, zeta potential, and % encapsulation efficiency as responses.  The effect of every factor on responses was statistically analyzed using ANOVA and p-Value, and the correlation coefficient of all the responses was found to be >0.99 and >0.96 for optimized CSNPs and optimized SCSNPs respectively with p<0.05. From the predicted and observed values of responses, the optimized formulation (SCSNPs) has a particle size of 261±3.06 nm, with an encapsulation efficiency of 81.3±5.3%. Morphology of the particles using scanning electron microscopy reveals nearly spherical shaped particles with a zeta potential of +41.4±0.5 mV. In-vitro studies acknowledge that sulfasalazine was released in a sustained manner for about 24 hrs in simulated colonic fluid pH 7 and phosphate buffer pH 7.4, when compared to a simulated colonic fluid at fed (pH 6) and fasted state (pH 7.8).

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Authors

Ganesh Narayan Sharma
ganeshmph@gmail.com (Primary Contact)
Praveen Kumar C H
Birendra Shrivastava
Kumar B
Arindam Chatterjee
Ganesh Narayan Sharma, Praveen Kumar C H, Birendra Shrivastava, Kumar B, & Arindam Chatterjee. (2020). Box-Behnken design for development and characterization of nanostructured chitosan-based nanoparticles containing sulfasalazine for the treatment of ulcerative colitis. International Journal of Research in Pharmaceutical Sciences, 11(1), 532–545. Retrieved from https://ijrps.com/home/article/view/542

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