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Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
Aiphanol, a multi-targeting stilbenolignan, potently suppresses mouse lymphangiogenesis and lymphatic metastasis
Shan-Mei Chen1, Chuan-Ke Zhao2, Li-Cheng Yao3
1Key Laboratory of Carcinogenesis and Translational Research (Ministry of Education/Beijing), Department of Biochemistry and Molecular Biology, Peking University Cancer Hospital & Institute, Beijing, 100142, China.
Abstract:
The high incidence of lymphatic metastasis is closely related to poor prognosis and mortality in cancers. Potent inhibitors to prevent pathological lymphangiogenesis and lymphatic spread are urgently needed. The VEGF-C-VEGFR3 pathway plays a vital role in driving lymphangiogenesis and lymph node metastasis. In addition, COX2 in tumor cells and tumor-associated macrophages (TAMs) facilitates lymphangiogenesis. We recently reported that aiphanol, a natural stilbenolignan, attenuates tumor angiogenesis by repressing VEGFR2 and COX2. In this study, we evaluated the antilymphangiogenic and antimetastatic potency of aiphanol using in vitro, ex vivo and in vivo systems. We first demonstrated that aiphanol directly bound to VEGFR3 and blocked its kinase activity with an half-maximal inhibitory concentration (IC50) value of 0.29 μM in an in vitro ADP-GloTM kinase assay. Furthermore, we showed that aiphanol (7.5-30 μM) dose-dependently counteracted VEGF-C-induced proliferation, migration and tubular formation of lymphatic endothelial cells (LECs), which was further verified in vivo. VEGFR3 knockdown markedly mitigated the inhibitory potency of aiphanol on lymphangiogenesis. In 4T1-luc breast tumor-bearing mice, oral administration of aiphanol (5 and 30 mg· kg-1 ·d-1) dose-dependently decreased lymphatic metastasis and prolonged survival time, which was associated with impaired lymphangiogenesis, angiogenesis and, interestingly, macrophage infiltration. In addition, we found that aiphanol decreased the COX2-dependent secretion of PGE2 and VEGF-C from tumor cells and macrophages. These results demonstrate that aiphanol is an appealing agent for preventing lymphangiogenesis and lymphatic dissemination by synergistically targeting VEGFR3 and inhibiting the COX2-PGE2-VEGF-C signaling axis.
Insights
Aiphanol inhibits cancer lymphatic spread by targeting VEGFR3 and COX2 pathways. This natural compound reduces lymphangiogenesis and metastasis, offering a potential new treatment to improve patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Lymphatic metastasis is a key factor in poor cancer prognosis.
- The VEGF-C-VEGFR3 pathway and COX2 are critical for lymphangiogenesis and metastasis.
- Targeting these pathways offers a strategy to inhibit cancer spread.
Purpose of the Study:
- To evaluate the antilymphangiogenic and antimetastatic potential of aiphanol.
- To investigate aiphanol's mechanism of action on the VEGFR3 and COX2 pathways.
- To assess aiphanol's efficacy in preclinical cancer models.
Main Methods:
- In vitro kinase assays to determine VEGFR3 inhibition.
- Cell-based assays assessing lymphatic endothelial cell proliferation and migration.
- In vivo studies using a murine breast cancer model.
- Analysis of COX2-PGE2-VEGF-C signaling axis.
Main Results:
- Aiphanol directly inhibited VEGFR3 kinase activity (IC50 = 0.29 μM).
- Aiphanol suppressed VEGF-C-induced lymphatic endothelial cell functions in vitro and in vivo.
- Oral aiphanol reduced lymphatic metastasis, prolonged survival, and decreased tumor angiogenesis and macrophage infiltration in mice.
- Aiphanol inhibited COX2-dependent PGE2 and VEGF-C secretion.
Conclusions:
- Aiphanol effectively prevents lymphangiogenesis and lymphatic metastasis.
- Aiphanol acts by synergistically targeting VEGFR3 and inhibiting the COX2-PGE2-VEGF-C axis.
- Aiphanol shows promise as a therapeutic agent against cancer lymphatic spread.

