| Literature DB >> 32194806 |
Ruicheng Fan1,2, Heng Wang3, Liyuan Zhang3, Teng Ma1, Yanping Tian1, Hongli Li1.
Abstract
Glioma associates with high malignancy and poor prognosis for traditional treatment. Oleanolic acid (OA) has been confirmed to have an inhibitory effect on different kinds of tumors, while accompanying with low efficiency because of its large molecular mass and low solubility. Nanoliposome is an appropriate drug delivery system that can compensate for the limitations of traditional insoluble drugs, involving improvement of their solubility, stability and lipophilicity. In the present study, we comprised of OA covered with nanoliposomes, named OAnano, to observe antitumor effects on U87 glioma cells. The results showed that OAnano raised the solubility and oil-water partition coefficient. OAnano suppressed proliferation of U87 glioma cells, and also had an anticancer effect on U87 glioma cells, which was found to be higher than that of OA. Moreover, treatment with OAnano induced apoptosis and degraded migration ability by caspase-3 pathway. In conclusion, our results demonstrated that OA covered with nanoliposomes led to enhanced anticancer effects by suppressing proliferation, migration and invasion abilities. The findings may provide a reliable reference for development of new anti-cancer drugs. © The author(s).Entities:
Keywords: lipophilicity; migration and invasion abilities; oleanolic acid, nano-particles, glioma cells
Year: 2020 PMID: 32194806 PMCID: PMC7052863 DOI: 10.7150/jca.38847
Source DB: PubMed Journal: J Cancer ISSN: 1837-9664 Impact factor: 4.207
Figure 1Construction of OA Appearance of DMSO-OAnano (left) and DMSO-OA (right) solution (50 μmol/L). B. OAnano was observed under scanning electron microscopy. C. Dissolution rates of OA and OAnano. D. IC50 of OAnano (35 μmol/L) indicated by the inhibitory rate. E. Oil-water partition coefficients of OA and OAnano.
Figure 2OA U87 glioma cells observed under a fluorescence microscope after 24 h of treatment with DMSO, DMSO-OA and DMSO-OAnano at 35 μmol/L. bar=100 μm B. Normalized proliferation rate of U87 glioma cells after 24 h of treatment with DMSO, DMSO-OA and DMSO-OAnano at different concentrations (0, 25, 35, and 45 μmol/L). C. Bioluminescence intensities and areas of the orthotopic glioblastoma xenograft mouse model after treatment by OAnano and DMSO for 1, 2, and 3 weeks. D. Tumors excised from the survived mice in OAnano-treated and DMSO groups. E. Reactive fold-change of bioluminescence intensities and areas of the orthotopic glioblastoma xenograft mouse model after treatment by OAnano and DMSO for 1, 2, and 3 weeks. F. Volume of tumors excised from the survived mice in OAnano-treated and DMSO groups. G. Caspase-3 positive cells of tumors excised from the survived mice in OAnano-treated and DMSO groups. H. PCNA positive cells of tumors excised from the survived mice in OAnano-treated and DMSO groups. I. IHC analysis of Caspase-3 and PCNA in tumors excised from the survived mice in OAnano-treated and DMSO groups. bar=100 μm. J. H&E staining of tumors excised from the survived mice in OAnano-treated and DMSO groups. bar=100 μm.
Figure 3OA RT-PCR result of Ki-67 and Caspase-3 in U87 glioma cells treated with DMSO or OAnano for 24 h. B. mRNA expression of Ki-67 in U87 glioma cells treated with DMSO or OAnano for 24 h. C. mRNA expression of Caspase-3 in U87 glioma cells treated with DMSO or OAnano for 24 h. D. The proportion of Caspase-3 positive U87 cells in immunofluorescence after 24 h of treatment with DMSO or OAnano. E. Immunofluorescence of Ki-67 and Caspase-3 in U87 glioma cells treated with DMSO or OAnano for 24 h. bar=50 μm. F. The proportion of Ki-67 positive U87 glioma cells in immunofluorescence after 24 h of treatment with DMSO or OAnano.
Figure 4OA U87 glioma cells observed under a phase contrast microscope after scratched and treated with DMSO or OAnano for 24 h. The line confines the initial area of removed cells. bar=100 μm. B. The proportion of migrated U87 glioma cells after scratched and treated with DMSO or OAnano for 24 h. C. The proportion of Vimentin positive U87 cells after treated with DMSO or OAnano for 24 h. D. IHC analysis of Vimentin in U87 glioma cells after 24 h of treatment with DMSO or OAnano. bar=50 μm. E. RT-PCR analysis of MMP-7 in U87 glioma cells treated with DMSO or OAnano for 24 h. F. U87 glioma cells which remained on the upper layer of the Transwell chamber after treated with DMSO or OAnano for 24 h. bar=100 μm. G. The proportion of U87 glioma cells remaining on the upper membrane of the Transwell chamber after treating with DMSO or OAnano for 24 h. H. mRNA expression of MMP-7 in U87 glioma cells after treated with DMSO or OAnano for 24 h.