| Literature DB >> 32020873 |
Mao-Ze Wang1, Jin Gao2,3,4, Yang Chu1, Jie Niu1, Ming Chen2, Qiang Shang3,4, Li-Hua Peng5,6, Zhi-Hong Jiang7.
Abstract
BACKGROUND: Crocetin is a major active component of saffron, which has a wide range of pharmacological effects. However, due to its low solubility, the pharmacological effects of crocetin cannot be better utilized.Entities:
Keywords: Anti-tumor effect; Crocetin derivatives; Inflammation inhibition; Solubility
Mesh:
Substances:
Year: 2020 PMID: 32020873 PMCID: PMC7076819 DOI: 10.1186/s12906-020-2831-y
Source DB: PubMed Journal: BMC Complement Med Ther ISSN: 2662-7671
Fig. 1Synthesis and chemical structures of compounds A and B
Water solubility of crocetin, synthesized derivatives A and B
| Compounds | Wavelength (nm) | Water Solubility (μg/ml) |
|---|---|---|
| Crocetin | 440 | 1.238 ± 0.001 |
| A | 421 | 24.20 ± 0.003 |
| B | 422 | 15.20 ± 0.002 |
Fig. 2Crocetin and its synthesized derivatives A、B inhibits cell proliferation in A549 cells. A549 cells were treated with different concentrations of crocetin and its synthesized derivatives A、B inhibits. After 24 h’ co-incubation at 37 °C, the cell survival rate was determined by MTT assays. Data represent mean ± SD. The results shown were reproduced at least 6 independent experiments. *** Indicates p < 0.001, ** indicates p < 0.01, and * indicates p < 0.05, for each treatment group versus solvent control group
Fig. 3Crocetin and its synthesized derivatives A、B inhibits cell proliferation in B16F10 cells. B16F10 cells were treated with different concentrations of crocetin and its synthesized derivatives A、B inhibits. After 24 h’ co-incubation at 37 °C, the cell survival rate was determined by MTT assays. Data represent mean ± SD. The results shown were reproduced at least 6 independent experiments. *** Indicates p < 0.001, ** indicates p < 0.01, and * indicates p < 0.05, for each treatment group versus solvent control group
Fig. 4Crocetin and its synthesized derivatives A、B inhibits cell proliferation in SKOV3 cells. SKOV3 cells were treated with different concentrations of crocetin and its synthesized derivatives A、B inhibits. After 24 h’ co-incubation at 37 °C, the cell survival rate was determined by MTT assays. Data represent mean ± SD. The results shown were reproduced at least 6 independent experiments. *** Indicates p < 0.001, ** indicates p < 0.01, and * indicates p < 0.05, for each treatment group versus solvent control group
IC50 values of the synthesized compounds in different tumor cell lines
| IC50 | A549 (μg/ml) | B16F10 (μg/ml) | SKOV3 (μg/ml) |
|---|---|---|---|
| crocetin | 55.39 | 270.13 | 559.0 |
| A | 49.59 | 63.98 | 168.31 |
| B | 6.23 | 15.08 | – |
Fig. 5Influenced of crocetin and its synthesized derivatives A、B on NO production in RAW 264.7 cell. RAW 264.7 cells were treated with different concentrations of crocetin and its synthesized derivatives A、B inhibits. After 24 h’ co-incubation at 37 °C, the expression of NO was measured by Griess reagent and protein levels were calculated by the BCA assays. Data represent mean ± SD. The results shown were reproduced by at least 6 independent experiments. ** Indicates p < 0.01 for each treatment group compared with 2 μg/ml group; * indicates p < 0.05 for each treatment group compared with 2 μg/ml group
Fig. 6Cytotoxicity of crocetin and its synthesized derivatives A、B in RAW 264.7 cells. Total protein concentration of the cells were determined by BCA assays. Data represent mean ± SD. The results shown were reproduced by at least 6 independent experiments. ** Indicates p < 0.01 for each treatment group compared with 2 μg/ml group; * indicates p < 0.05 for each treatment group compared with 2 μg/ml group