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Research Journal of Pharmacy and Technology
Year : 2018, Volume : 11, Issue : 5
First page : ( 1705) Last page : ( 1712)
Print ISSN : 0974-3618. Online ISSN : 0974-360X.
Article DOI : 10.5958/0974-360X.2018.00317.7

Design and characterization of quick dissolving film for simultaneous delivery of montelukast sodium and levocetirizine dihydrochloride

Kengeri Savita1, Nagesh C1, Naduvinamani Suma1, Attimarad Sunil L1, Jorapur Devika1, Chandrasekhara S1,*, Sambrekar Sudhir N2

1Department of Pharmaceutics, Maratha Mandal's College of Pharmacy, Belgaum-590016, Karnataka, India

2Department of Pharmacology, Maratha Mandal's College of Pharmacy, Belgaum-590016, Karnataka, India

*Corresponding Author E-mail: shekhar_bio@yahoo.co.in

Online published on 21 August, 2018.

Abstract

The main objective of the present investigation was to develop fast dissolving films of montelukast sodium and levocetirizine dihydrochloride using sodium starch glycolate as disintegrating agent to achieve better drug bio availability and patient's compliance. This combination is the most effective in the management of allergic rhinitis and asthma. The results of preformulation study indicated that drug and excipients are compatible with each other with its purest forms. The solvent casting method was used to prepare different batches of films. The prepared fast dissolving films were evaluated for physical appearance, weight uniformity, uniformity of thickness, folding endurance, surface pH, tensile strength, moisture content, disintegration time, % drug content, in-vitro dissolution studies. From the study it was found that F8 has showed maximum release of 94.40±0.48% for montelukast sodium and 95.66±0.24% for levocetirizinedihydrochloride within 225sec. Based on the results such as drug content, disintegrating time and drug release it was concluded that fast dissolving films are suitable for oral administration of montelukast sodium and levocetirizine dihydrochloride.

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Keywords

Mouth dissolving films, montelukast sodium, levocetirizine dihydrochloride, polymers and sodium starch glycolate.

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