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Tetrac as an anti-angiogenic agent in cancer
Kathrin A Schmohl1, Peter J Nelson1, Christine Spitzweg1
1Department of Internal Medicine IV, University Hospital of Munich, LMU Munich, Munich, Germany.
Abstract:
The thyroid hormones T3 and T4 have emerged as pro-angiogenic hormones with important implications for cancer management. Endogenous circulating hormone levels may help stimulate cancer progression and limit the effectiveness of anticancer therapy, though clinical data remain inconclusive. The capacity of thyroid hormones to modulate angiogenesis is mediated through non-canonical mechanisms initiated at the cell surface receptor integrin αvβ3. This integrin is predominantly expressed on tumour cells, proliferating endothelial cells and tumour stroma-associated cells, emphasising its potential relevance in angiogenesis and tumour biology. Thyroid hormone/integrin αvβ3 signalling results in the activation of intracellular pathways that are commonly associated with angiogenesis and are mediated through classical pro-angiogenic molecules such as vascular endothelial growth factor. The naturally occurring T4 analogue tetrac blocks the pro-angiogenic actions of thyroid hormones at the integrin receptor, in addition to agonist-independent anti-angiogenic effects. Tetrac reduces endothelial cell proliferation, migration and tube formation through a reduction in the transcription of vascular growth factors/growth factor receptors, hypoxia-inducible factor-1α, pro-angiogenic cytokines and a number of other pro-angiogenic genes, while at the same time stimulating the expression of endogenous angiogenesis inhibitors. It further modulates vascular growth factor activity by disrupting the crosstalk between integrin αvβ3 and adjacent growth factor receptors. Moreover, tetrac disrupts thyroid hormone-stimulated tumour recruitment, differentiation and the pro-angiogenic signalling of tumour stroma-associated mesenchymal stem cells. Tetrac affects tumour-associated angiogenesis via multiple mechanisms and interferes with other cancer cell survival pathways. In conjunction with its low toxicity and high tissue selectivity, tetrac is a promising candidate for clinical application.
Insights
Thyroid hormones T3 and T4 promote angiogenesis and cancer progression. The T4 analogue tetrac inhibits these pro-angiogenic effects by targeting integrin αvβ3, offering a promising cancer therapy candidate.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Thyroid hormones (T3 and T4) are increasingly recognized for their pro-angiogenic roles in cancer.
- Endogenous hormone levels may influence cancer progression and treatment efficacy, though clinical evidence is pending.
- Thyroid hormone-mediated angiogenesis is primarily driven by interactions with the cell surface receptor integrin αvβ3.
Purpose of the Study:
- To investigate the anti-angiogenic potential of the T4 analogue tetrac.
- To elucidate the mechanisms by which tetrac modulates thyroid hormone-induced angiogenesis.
- To evaluate tetrac as a potential therapeutic agent in cancer management.
Main Methods:
- Utilized cell-based assays to assess endothelial cell proliferation, migration, and tube formation.
- Analyzed gene and protein expression related to angiogenesis, including vascular growth factors and hypoxia-inducible factor-1α.
- Investigated the interaction of tetrac with integrin αvβ3 and its downstream signaling pathways.
- Examined the effects of tetrac on tumor stroma-associated mesenchymal stem cells.
Main Results:
- Tetrac effectively blocks thyroid hormone's pro-angiogenic activity at the integrin αvβ3 receptor.
- Tetrac reduces endothelial cell proliferation, migration, and tube formation by downregulating pro-angiogenic gene expression.
- Tetrac stimulates the expression of endogenous angiogenesis inhibitors and disrupts crosstalk between integrin αvβ3 and growth factor receptors.
- Tetrac inhibits thyroid hormone-driven tumor cell recruitment, differentiation, and pro-angiogenic signaling from mesenchymal stem cells.
Conclusions:
- Tetrac exhibits multi-mechanistic anti-angiogenic effects, targeting key pathways involved in tumor growth and vascularization.
- Tetrac demonstrates low toxicity and high tissue selectivity, positioning it as a promising candidate for clinical cancer therapy.
- Targeting the thyroid hormone-integrin αvβ3 axis with tetrac represents a novel therapeutic strategy for cancer management.
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