| Submission to first decision
(The average time from manuscript submission to desk rejection, direct rejection/acceptance or assignment to the first editor) Note: For manuscripts that fully comply with the journal template. However, this timeframe does not apply to manuscripts with formatting or guideline deficiencies. If a manuscript is returned to the authors for corrections, the administrative review process will restart from the re-submission date. |
3 weeks |
|---|---|
| Submission to decision after review (For papers that are sent to review, the average time from submission to receipt of first editor decision) | 6 weeks |
| Submission to final decision (The average time from manuscript submission to the final editorial decision) | 16 weeks |
| Submission to publication (The average time from acceptance to publication. Manuscript published in early view are also included in this calculation) | 24 weeks |
ACTA Pharmaceutica Sciencia
2022 , Vol 60 , Num 4
Formulation development of oral disintegrating film of fexofenadine hydrochloride
1 Department of Pharmaceutics, Krupanidhi College of Pharmacy, Bengaluru, India 560035DOI : 10.23893/1307-2080.APS6023 Viewed : 11173 - Downloaded : 3812 The present study aimed to develop an oral disintegrating film of fexofenadine hydrochloride for the immediate management of allergies and related symptoms. The formulation of fast dissolving oral film was carried out by solvent casting method using two different grades of hydroxy propyl methyl cellulose, polyvinyl pyrrolidone, polyvinyl acetate, and pullulan as polymers and different plasticizers. Six such films were produced. The films were evaluated for their physicochemical and mechanical properties. Compatibility and thermal studies were carried out. The surface morphology of the films was studied. All six formulations were evaluated for surface pH, disintegration, and drug release study in simulated saliva. The best films were taken for stability studies. Formulations prepared with all the polymers in different proportions of plasticizers could produce a non-sticky stable film. The thermal studies revealed the uniform dispersion of the drug in the polymer matrix. Films prepared with pullulan showed better flexibility and dissolution behavior. Stability studies of the pullulan films highlighted that the films were stable and could retain their physical and mechanical properties. Hence, it can be concluded that pullulan can be successfully employed to prepare fast dissolving oral films of fexofenadine hydrochloride. Keywords : Fexofenadine hydrochloride, Oral disintegrating film, Plasticizers, Mechanical properties, pullulan
