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Published on: October 14, 2022
Lumican Inhibits In Vivo Melanoma Metastasis by Altering Matrix-Effectors and Invadopodia Markers
Konstantina Karamanou1,2,3, Marco Franchi4, Isabelle Proult1,2
1CNRS UMR 7369, Matrice Extracellulaire et Dynamique Cellulaire, 51100 Reims, France.
Abstract:
It was reported that lumican inhibits the activity of metalloproteinase MMP-14 and melanoma cell migration in vitro and in vivo. Moreover, Snail triggers epithelial-to-mesenchymal transition and the metastatic potential of cancer cells. Therefore, the aim of this study was to examine the effect of lumican on Mock and Snail overexpressing melanoma B16F1 cells in vivo. Lung metastasis was analyzed after intravenous injections of Mock-B16F1 and Snail-B16F1 cells in Lum+/+ and Lum-/- mice. At day 14, mice were sacrificed, and lungs were collected. The number of lung metastatic nodules was significantly higher in mice injected with Snail-B16F1 cells as compared to mice injected with Mock-B16F1 cells confirming the pro-metastatic effect of Snail. This effect was stronger in Lum-/- mice as compared to Lum+/+, suggesting that endogenous lumican of wild-type mice significantly inhibits metastasis to lungs. Scanning electron and confocal microscopy investigations demonstrated that lumican inhibits the development of elongated cancer cell phenotypes which are known to develop invadopodia releasing MMPs. Moreover, lumican was shown to affect the expression of cyclin D1, cortactin, vinculin, hyaluronan synthase 2, heparanase, MMP-14 and the phosphorylation of FAK, AKT, p130 Cas and GSK3α/β. Altogether, these data demonstrated that lumican significantly inhibits lung metastasis in vivo, as well as cell invasion in vitro, suggesting that a lumican-based strategy targeting Snail-induced metastasis could be useful for melanoma treatment.
Insights
Lumican significantly inhibits melanoma lung metastasis by blocking cancer cell invasion and the pro-metastatic effects of Snail. This suggests lumican as a potential therapeutic target for melanoma treatment.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Lumican is known to inhibit matrix metalloproteinase MMP-14 and melanoma cell migration.
- Snail protein promotes epithelial-to-mesenchymal transition and cancer cell metastasis.
Purpose of the Study:
- To investigate the effect of lumican on melanoma B16F1 cells overexpressing Snail in vivo.
- To analyze the role of endogenous lumican in inhibiting Snail-induced metastasis.
Main Methods:
- Intravenous injection of Mock and Snail-overexpressing B16F1 melanoma cells into wild-type (Lum+/+) and lumican-deficient (Lum-/-) mice.
- Analysis of lung metastatic nodules at day 14.
- Scanning electron and confocal microscopy.
- Assessment of molecular markers including MMP-14, cyclin D1, and signaling pathway components.
Main Results:
- Snail overexpression significantly increased lung metastasis compared to Mock cells.
- The pro-metastatic effect of Snail was more pronounced in lumican-deficient mice, indicating lumican's inhibitory role.
- Lumican was shown to inhibit elongated cancer cell phenotypes, invadopodia formation, and the expression/phosphorylation of key metastatic and signaling molecules.
- Lumican inhibited both in vivo lung metastasis and in vitro cell invasion.
Conclusions:
- Endogenous lumican significantly suppresses lung metastasis in a Snail-dependent manner.
- Lumican inhibits key cellular processes driving melanoma metastasis, including cell elongation and invasion.
- Lumican represents a promising therapeutic target for mitigating Snail-induced melanoma metastasis.
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