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The Establishment of a Lung Colonization Assay for Circulating Tumor Cell Visualization in Lung Tissues
Published on: June 16, 2018
Flavonoids inhibit melanoma lung metastasis by impairing tumor cells endothelium interactions
Mauro Piantelli1, Cosmo Rossi, Manuela Iezzi
1Department of Oncology and Neurosciences, G.d'Annunzio University of Chieti-Pescara, Chieti, Italy. mpiantel@unich.it
Abstract:
Flavonoids comprise a class of low molecular weight compounds displaying a variety of biological activities including inhibition of tumor growth and metastasis. To gain insight into the mechanisms underlying metastasis inhibition, we have employed the B16-BL6 murine melanoma metastasis model. B57BL/6N mice were injected i.v. with tumor cells and Apigenin, Quercetin, or Tamoxifen, each at 50 mg/kg given i.p., and lung tumor cell colonies counted 14-6 days thereafter. Three different injection schedules were used for each drug: (a) daily injection, starting 24 h before injection of the tumor cells; (b) single dose, 24 h preceding tumor challenge; (c) daily injection, starting 24 h after the injection of the tumor cells. All three compounds significantly reduced tumor lung deposits (Apigenin = Quercetin > Tamoxifen). However, when treatment was delayed by 24 h after tumor cells (schedule c), multiple daily doses of Apigenin or Quercetin were less effective that a single dose of the same compound given 24 h before tumor challenge (schedule b). Apigenin and Quercetin, but not Tamoxifen, were found to inhibit VCAM-1 expression in a dose-dependent manner in HUVEC and in murine pulmonary endothelial cells. In ex vivo experiments, the number of tumor cells adhering to lung vessels was significantly diminished in animals treated with a single dose of Apigenin and Quercetin. These findings indicate that the inhibition of tumor cell metastasis by Apigenin or Quercetin may significantly depend on the ability of these compounds to alter the host's microenvironment, further substantiating the role of the intravascular processes in the metastatic cascade.
Insights
Flavonoids like Apigenin and Quercetin inhibit melanoma metastasis by reducing tumor cell adhesion. Early administration is more effective than delayed treatment for these natural compounds.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Flavonoids are natural compounds with known anti-cancer properties.
- Metastasis is a complex process involving tumor cell spread and adhesion.
- Understanding metastasis inhibition mechanisms is crucial for developing new therapies.
Purpose of the Study:
- To investigate the anti-metastatic effects of Apigenin and Quercetin.
- To elucidate the mechanisms by which these flavonoids inhibit metastasis.
- To compare the efficacy of different administration schedules for Apigenin, Quercetin, and Tamoxifen.
Main Methods:
- Utilized the B16-BL6 murine melanoma metastasis model.
- Administered Apigenin, Quercetin, and Tamoxifen via intraperitoneal injection.
- Assessed lung tumor colonies and VCAM-1 expression under various treatment schedules.
Main Results:
- Apigenin and Quercetin significantly reduced lung tumor deposits, outperforming Tamoxifen.
- A single dose 24 hours before tumor challenge was more effective than delayed multi-dose treatment.
- Apigenin and Quercetin inhibited VCAM-1 expression and reduced tumor cell adhesion to lung vessels.
Conclusions:
- Apigenin and Quercetin demonstrate significant anti-metastatic activity in a murine melanoma model.
- The anti-metastatic efficacy of these flavonoids is linked to their ability to modulate the host microenvironment and inhibit VCAM-1 expression.
- Early intervention with flavonoids appears critical for optimal metastasis inhibition.

