| Literature DB >> 33006710 |
Zahra Al-Sahaf1, Bahijja Raimi-Abraham2, Mariano Licciardi2, Laura Modica de Mohac3,4.
Abstract
This study was conducted to formulate buccal films consisting of polyvinyl alcohol (PVA) and poly-N-hydroxyethyl-aspartamide (PHEA), to improve the dissolution of the drug through the oral mucosa. Ibuprofen sodium salt was used as a model drug, and the buccal film was expected to enhance its dissolution rate. Two different concentrations of PVA (5% w/v and 7.5% w/v) were used. Solvent casting was used to prepare films, where a solution consisting of drug and polymer was cast and allowed to dry. Attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR), differential scanning calorimetry (DSC), and scanning electron microscopy (SEM) were used to investigate the properties of films. In vitro dissolution studies were also conducted to investigate drug release. SEM studies showed that films containing a higher concentration of PVA had larger particles in microrange. FTIR studies confirmed the presence of the drug in films and indicated that ibuprofen sodium did not react with polymers. DSC studies confirmed the crystalline form of ibuprofen sodium when incorporated within films. In vitro dissolution studies found that the dissolution percentage of ibuprofen sodium alone was increased when incorporated within the film from 59 to 74%. This study led to the development of solid microcrystalline dispersion as a buccal film with a faster dissolution rate than the drug alone overcoming problem of poor solubility.Entities:
Keywords: PHEA; PVA; buccal film; crystalline; ibuprofen sodium
Mesh:
Substances:
Year: 2020 PMID: 33006710 PMCID: PMC7532132 DOI: 10.1208/s12249-020-01811-z
Source DB: PubMed Journal: AAPS PharmSciTech ISSN: 1530-9932 Impact factor: 3.246
Concentration of PVA, PHEA, and Ibuprofen Sodium Used to Prepare Pharmaceutical Films
| Film | PVA (% w/v) | PHEA (% w/v) | Ibuprofen sodium (% w/v) |
|---|---|---|---|
| F1 | 5.0 | – | – |
| F2 | 7.5 | – | – |
| F3 | 5.0 | 2.5 | – |
| F4 | 7.5 | 2.5 | – |
| F5 | 5.0 | 2.5 | 10.0 |
| F6 | 7.5 | 2.5 | 10.0 |
PVA polyvinyl alcohol, PHEA poly-N-hydroxyethyl-aspartamide
Fig. 1ATR-FTIR spectra of raw materials PVA, PHEA, and ibuprofen sodium
Peak Assignation for Each Raw Material PVA, PHEA, and Ibuprofen Sodium. Data Are Coherent with Literature Findings (36–38)
| Raw material | Peaks | Assignation |
|---|---|---|
| PVA | 3290 cm−1 | Stretching O–H group |
| 2939 cm−1 | Asymmetric stretching C–H group | |
| 1732 cm−1 | Stretching C=O | |
| 1567 cm−1 | Stretching C=C | |
| 1421 cm−1 | Symmetric bending CH2 group | |
| PHEA | 3276 cm−1 | Stretching O–H bond |
| 2938 cm−1 | Aliphatic stretching C–H group | |
| 1633 cm−1 | Stretching C=O group | |
| 1525 cm−1 | Vibrations N–H group | |
| 1427 cm−1 | Aliphatic bending C–H group | |
| 1362 cm−1 | Bending O–H group | |
| 1056 cm−1 | Ester group | |
| Ibuprofen sodium | 2951 cm−1 | Asymmetric stretching CH3 group |
| 1698 cm−1 | Stretching C=O group | |
| 1545 cm−1 | Stretching vibrations C=C | |
| 1251 cm−1 | C–O stretching | |
| 748 cm−1 | Vibration CH2 group |
PVA polyvinyl alcohol, PHEA poly-N-hydroxyethyl-aspartamide
Fig. 2FTIR spectra of a PVA with F1 and F2; b PVA and PHEA with F3 and F4; and c PVA, PHEA, and ibuprofen sodium with F5 and F6
Fig. 3DSC graphs of ibuprofen sodium and pure PVA compared with F5 and F6 that present respectively peaks at 96°C and 95°C (endotherm down)
Fig. 4SEM images of F5 with a magnification of a × 350 and b × 700 and F6 with a magnification of c × 1K and d × 900
Fig. 5Dissolution profile of films and ibuprofen sodium a zoomed-in section of the first 60 min of dissolution and b full dissolution