| Literature DB >> 26633319 |
Ying Chen1, Huiyong Zhang2, Jing Yang3, Haiyan Sun4.
Abstract
The use of nano-encapsulated resveratrol (RSV) in self-micro-emulsified drug delivery systems (SMEDDS) formulations was investigated. Self-emulsifying grading tests were used to establish the optimal ratio of oil, surfactant, and co-surfactant. The optimized system was further investigated for the droplet size and zeta potential at the different medium pH values by a Malvern Zetasizer and transmission electron microscopy (TEM). The antioxidant capacity and cytotoxicity of the formulation were detected by DCFH-DA and a CCK-8 assays. The results showed that the nano-emulsion based on ethyl oleate, Tween-80, and PEG-400 (35:40:25, w/w/w) was the most stable formulation due to the small droplet size (approximately 50 nm) and high zeta potential in a neutral environment. Furthermore, this formulation also exhibited a greater antioxidant capacity with less toxicity than free RSV. Taken together, considering these results and the simple fabrication process, this formulation could be used to deliver nutritional food supplements in a stable, efficient, and safe manner.Entities:
Keywords: antioxidant; cytotoxicity; nano-encapsulation; oil-in-water; resveratrol; self-emulsifying
Mesh:
Substances:
Year: 2015 PMID: 26633319 PMCID: PMC6331851 DOI: 10.3390/molecules201219750
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1UV spectra of RSV, RSV emulsion, and mixture of oil, surfactant, and cosurfactant.
Solubility of RSV in different vehicles.
| Excipient | Solvent | Solubility (mg/mL) |
|---|---|---|
| Oil | Ethyl oleate | 60.84 ± 5.28 |
| Castor oil | 5.95 ± 0.82 | |
| Olive oil | 7.23 ± 1.54 | |
| Surfactant | Tween 80 | 7.30 ± 2.12 |
| Triton X-100 | 23.22 ± 4.19 | |
| Co-surfactant | PEG 400 | 33.22 ±3.45 |
| Glycerol | 21.08 ± 4.08 | |
| Glycol ether | 35.17 ± 6.83 |
Figure 2Pserdo-ternary diagram of ethyl oleate (oil), Tween 80 (surfactant), and PEG 400 (co-surfactant).
Droplet size (d) with the corresponding PDI of encapsulated RSV in different ratios of ethyl oleate, Tween 80, and PEG 400.
| Ethyl Oleate:Tween 80:PEG 400 | d (nm) | PDI |
|---|---|---|
| 25:45:30 | 51.84 ± 2.32 | 0.109 ± 0.022 |
| 25:50:25 | 43.97 ± 1.67 | 0.198 ± 0.015 |
| 25:60:15 | 51.2 ± 2.25 | 0.127 ± 0.019 |
| 30:45:25 | 58.36 ± 1.98 | 0.165 ± 0.013 |
| 35:40:25 | 48.66 ± 2.83 | 0.185 ± 0.017 |
Figure 3TEM images of encapsulated RSV particles. Particles have similar morphological aspects with spherical shapes and no aggregation.
Evaluation of the mean droplet size of encapsulated RSV (of ethyl oleate, Tween 80, and PEG 400) at 30 °C for 30 days.
| Days | d (nm) | PDI |
|---|---|---|
| 0 | 48.66 ± 2.83 | 0.185 ± 0.017 |
| 10 | 50.2 ± 1.26 | 0.108 ± 0.021 |
| 20 | 49.32 ± 2.05 | 0.173 ± 0.012 |
| 30 | 50.08 ± 2.01 | 0.145 ± 0.016 |
Droplet size (d) with the corresponding PDI and zeta potential of the optimal formulation (ethyl oleate, Tween 80, and PEG 400 at a ratio of 35:40:25).
| Medium | d (nm) | PDI | Zeta Potential (mV) |
|---|---|---|---|
| Water | 43.15 ± 3.67 | 0.207 ± 0.02 | −0.2715 ± 0.02 |
| pH = 1.2 (HCl) | 34.61 ± 2.87 * | 0.197 ± 0.01 | −0.3642 ± 0.03 |
| pH = 7.4 (PBS) | 33.5 ± 4.06 * | 0.129 ± 0.01 | −0.1091 ± 0.03 |
* p < 0.05 vs. water.
Figure 4Viability of PC12 cells cultured with free RSV and encapsulated RSV for 48 h at 10, 20, 50, and 100 μM concentrations (n = 3). * p < 0.05 vs. control, ** p < 0.01 vs. control; ## p < 0.01 vs. free RSV.
Figure 5Intracellular antioxidant activity of encapsulated and free RSV at different concentration (n = 3). ** p < 0.01 vs. free RSV.