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Analysis of Lymph Node Volume by Ultra-High-Frequency Ultrasound Imaging in the Braf/Pten Genetically Engineered Mouse Model of Melanoma
Published on: September 8, 2021
Functional involvement of β3-adrenergic receptors in melanoma growth and vascularization
Massimo Dal Monte1, Giovanni Casini, Luca Filippi
1Department of Biology, University of Pisa, via San Zeno, 31, 56127, Pisa, Italy.
Unlabelled:
β-adrenergic signaling is thought to facilitate cancer progression and blockade of β-adrenergic receptors (β-ARs) may slow down tumor growth. A possible role of β3-ARs in tumor growth has not been investigated so far and the lack of highly specific antagonists makes difficult the evaluation of this role. In the present study, β3-AR expression in mouse B16F10 melanoma cells was demonstrated and the effects of two widely used β3-AR blockers, SR59230A and L-748,337, were evaluated in comparison with propranolol, a β1-/β2-AR blocker with poor affinity for β3-ARs, and with siRNAs targeting specific β-ARs. Both SR59230A and L-748,337 reduced cell proliferation and induced apoptosis, likely through the involvement of the inducible isoform of nitric oxide synthase. In addition, hypoxia upregulated β3-ARs and vascular endothelial growth factor (VEGF) in B16F10 cells, whereas SR59230A or L-748,337 prevented the hypoxia-induced VEGF upregulation. Melanoma was induced in mice by inoculation of B16F10 cells. Intra-tumor injections of SR59230A or L-748,337 significantly reduced melanoma growth by reducing cell proliferation and stimulating apoptosis. SR59230A or L-748,337 treatment also resulted in significant decrease of the tumor vasculature. The decrease in tumor vasculature was due to apoptosis of endothelial cells and not to downregulation of angiogenic factors. These results demonstrate that SR59230A and L-748,337 significantly inhibit melanoma growth by reducing tumor cell proliferation and activating tumor cell death. In addition, both drugs reduce tumor vascularization by inducing apoptosis of endothelial cells. Together, these findings indicate β3-ARs as promising, novel targets for anti-cancer therapy.
Key Message:
β3-ARs are expressed in B16F10 melanoma cells β3-ARs are involved in B16F10 cell proliferation and apoptosis Reduced β3-AR function decreases the growth of melanoma induced by B16F10 cell inoculation Drugs targeting β3-ARs reduce tumor vasculature β3-ARs can be regarded as promising, novel targets for anti-cancer therapy.
Insights
Blocking beta-3 adrenergic receptors (β3-ARs) with drugs like SR59230A and L-748,337 inhibits melanoma growth by reducing cell proliferation and tumor vascularization. These findings suggest β3-ARs are promising targets for novel anti-cancer therapies.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Beta-adrenergic signaling influences cancer progression, with receptor blockade potentially slowing tumor growth.
- The specific role of beta-3 adrenergic receptors (β3-ARs) in tumor development remains largely unexplored due to a lack of selective antagonists.
- This study investigates the expression and function of β3-ARs in melanoma.
Purpose of the Study:
- To determine if β3-ARs are expressed in B16F10 melanoma cells.
- To evaluate the effects of β3-AR blockers on melanoma cell proliferation, apoptosis, and tumor growth in vivo.
- To assess the impact of β3-AR blockade on tumor vascularization.
Main Methods:
- Demonstrated β3-AR expression in B16F10 melanoma cells.
- Treated cells and mouse melanoma models with β3-AR blockers (SR59230A, L-748,337) and control agents.
- Utilized siRNAs to target specific β-ARs.
- Assessed cell proliferation, apoptosis, nitric oxide synthase activity, and vascular endothelial growth factor (VEGF) levels.
- Analyzed tumor growth and vascularization in vivo.
Main Results:
- SR59230A and L-748,337 reduced B16F10 cell proliferation and induced apoptosis, potentially via inducible nitric oxide synthase.
- Hypoxia upregulated β3-ARs and VEGF; β3-AR blockers prevented hypoxia-induced VEGF increase.
- In vivo, these blockers significantly reduced melanoma growth, proliferation, and apoptosis.
- Tumor vascularization decreased due to endothelial cell apoptosis, not reduced angiogenic factors.
Conclusions:
- β3-ARs are expressed in melanoma cells and play a role in proliferation and apoptosis.
- Targeting β3-ARs with SR59230A or L-748,337 effectively inhibits melanoma growth and reduces tumor vascularization.
- β3-ARs represent promising novel targets for developing anti-cancer therapies.
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