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Updated: May 20, 2026

A Syngeneic Mouse Model of Metastatic Renal Cell Carcinoma for Quantitative and Longitudinal Assessment of Preclinical Therapies
Published on: April 12, 2017
Contrasting effects of sunitinib within in vivo models of metastasis
Jonathan C Welti1, Thomas Powles, Shane Foo
1Tumour Biology Team, Breakthrough Breast Cancer Research Centre, The Institute of Cancer Research, Fulham Road, London, SW3 6JB, UK.
Abstract:
Sunitinib is a potent and clinically approved tyrosine kinase inhibitor that can suppress tumour growth by inhibiting angiogenesis. However, conflicting data exist regarding the effects of this drug on the growth of metastases in preclinical models. Here we use 4T1 and RENCA tumour cells, which both form lung metastases in Balb/c mice, to re-address the effects of sunitinib on the progression of metastatic disease in mice. We show that treatment of mice with sunitinib prior to intravenous injection of tumour cells can promote the seeding and growth of 4T1 lung metastases, but not RENCA lung metastases, showing that this effect is cell line dependent. However, increased metastasis occurred only upon administration of a very high sunitinib dose, but not when lower, clinically relevant doses were used. Mechanistically, high dose sunitinib led to a pericyte depletion effect in the lung vasculature that correlated with increased seeding of metastasis. By administering sunitinib to mice after intravenous injection of tumour cells, we demonstrate that while sunitinib does not inhibit the growth of 4T1 lung tumour nodules, it does block the growth of RENCA lung tumour nodules. This contrasting response was correlated with increased myeloid cell recruitment and persistent vascularisation in 4T1 tumours, whereas RENCA tumours recruited less myeloid cells and were more profoundly devascularised upon sunitinib treatment. Finally, we show that progression of 4T1 tumours in sunitinib treated mice results in increased hypoxia and increased glucose metabolism in these tumours and that this is associated with a poor outcome. Taken together, these data suggest that the effects of sunitinib on tumour progression are dose-dependent and tumour model-dependent. These findings have relevance for understanding how anti-angiogenic agents may influence disease progression when used in the adjuvant or metastatic setting in cancer patients.
Insights
Sunitinib's effect on cancer metastasis is dose- and model-dependent. High doses may promote metastasis by affecting blood vessels, while clinically relevant doses show variable effects on tumour growth and vascularization.
Area of Science:
- Oncology
- Pharmacology
- Cancer Metastasis Research
Background:
- Sunitinib is an approved tyrosine kinase inhibitor targeting angiogenesis.
- Conflicting preclinical data exist on sunitinib's impact on metastasis.
- Understanding sunitinib's role in metastatic disease is crucial.
Purpose of the Study:
- To re-evaluate sunitinib's effects on lung metastasis progression in preclinical models.
- To investigate dose- and cell-line dependency of sunitinib's anti-metastatic activity.
- To elucidate mechanisms underlying sunitinib's influence on metastasis.
Main Methods:
- Utilized 4T1 and RENCA murine cancer models for lung metastasis studies.
- Administered sunitinib at varying doses before and after tumour cell injection.
- Assessed metastasis seeding, growth, vascularization, and immune cell infiltration.
Main Results:
- High-dose sunitinib promoted 4T1 lung metastasis via pericyte depletion, but not RENCA.
- Clinically relevant sunitinib doses showed differential effects on 4T1 and RENCA metastasis growth.
- 4T1 tumours exhibited increased hypoxia and glucose metabolism under sunitinib treatment, correlating with poor outcomes.
Conclusions:
- Sunitinib's impact on metastasis is highly dependent on dose and tumour type.
- High-dose sunitinib can paradoxically promote metastasis by affecting lung vasculature.
- Findings inform the use of anti-angiogenic drugs in cancer treatment settings.

