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Original Research Article | OPEN ACCESS

Pharmacokinetic Study of a Capsule-based Chronomodulated Drug Delivery System of Salbutamol Sulphate in Rabbits

Mohd Javed Qureshi1,2 , Javed Ali1, Sanjula Baboota1, Alka Ahuja1, Chitneni Mallikarjun3

1Department of Pharmaceutical Technology, School of Pharmacy, Taylor’s University, Lakeside Campus, Selangor Malaysia; 2Department of Pharmaceutics, Jamia Hamdard (Hamdard University), New Delhi, India; 3Department of Pharmaceutical Technology, International Medical University, Kuala Lumpur, Malaysia.

For correspondence:-  Mohd Qureshi   Email: Mohd.Javed@taylors.edu.my

Received: 9 June 2013        Accepted: 4 November 2013        Published: 25 January 2014

Citation: Qureshi MJ, Ali J, Baboota S, Ahuja A, Mallikarjun C. Pharmacokinetic Study of a Capsule-based Chronomodulated Drug Delivery System of Salbutamol Sulphate in Rabbits. Trop J Pharm Res 2014; 13(1):17-22 doi: 10.4314/tjpr.v13i1.3

© 2014 The authors.
This is an Open Access article that uses a funding model which does not charge readers or their institutions for access and distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0) and the Budapest Open Access Initiative (http://www.budapestopenaccessinitiative.org/read), which permit unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited..

Abstract

Purpose: To develop and determine the in vivo performance of a capsule-based pulsatile drug delivery system containing salbutamol sulphate.
Methods: A controlled pulsatile release of drug after a programmed 4 h lag period was achieved from cross-linked gelatin capsule shells containing salbutamol pellets, and sealed with a suitable mixture of sodium alginate and ethyl cellulose as plug.  In order to confirm the utility of developed system for the management of nocturnal asthma, a crossover study was conducted.   six  male rabbits were  fasted overnight and divided into two groups comprised of 3 rabbits each. The individual rabbits were administered the developed pulsatile capsule and immediate release salbutamol capsule as reference, separately. Blood samples were collected from the ear vein of the animals into heparinized tubes and used to determine pharmacokinetic parameters, namely, maximum plasma concentration (Cmax), time to reach maximum plasma concentration (Tmax), and area under the plasma concentration - time curve (AUC0-∞) using a validated HPLC method.
Results: It was observed that drug release from the optimized time-controlled capsule stopped for a period of approximately 4.25 h with an average Cmax and Tmax of  271.54 ± 58.95 ng/ml and 6.00 ± 0.25 h. The AUC0-∞ of salbutamol after administration of the time-controlled pulsatile system was 2494.73 ± 525.95 ng h/ml while that of the immediate-release formulation was 2352.77 ± 432.51 ng h/ml.  Using ANOVA at a significant difference of p < 0.05 (CI 95%), there was no significant difference for the AUC0-∞   between immediate release and the pulsatile capsule developed.
Conclusion: The developed system is capable of releasing salbutamol after a 4 h lag period and can be considered as promising delivery system for time-controlled (pulsatile) delivery of  the medication for the management of nocturnal asthma.

Keywords: pH-controlled release, Lag time, Pulsatile release, Hydrocolloid plug, Nocturnal asthma

Impact Factor
Thompson Reuters (ISI): 0.523 (2021)
H-5 index (Google Scholar): 39 (2021)

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