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Receptor Autoradiography Protocol for the Localized Visualization of Angiotensin II Receptors
Published on: June 7, 2016
Unlocking the potential of targeting the angiotensin II type 1 receptor in cancer
David R Butcher1, Christopher N Parris1, Scott J Crichton2
1Anglia Ruskin University, Cambridge, UK.
Abstract:
The renin-angiotensin system is a key regulator of blood pressure homeostasis, with its primary effector, the angiotensin II type 1 receptor (AT1R), mediating vasoconstriction and processes fundamental to cancer progression, including proliferation, angiogenesis, and metastasis. Elevated AT1R expression is consistently linked to poor prognosis and therapeutic resistance across various malignancies. Preclinical studies provide compelling evidence that AT1R activation drives key cancer related processes, while its inhibition by angiotensin receptor blockers (ARBs) suppresses tumour growth, induces apoptosis, reduces angiogenesis, and inhibits metastasis across a wide range of cancer models. Critically, ARBs effectively modulate the tumour microenvironment (TME), alleviating fibrosis, promoting anti-tumour immune cell phenotypes, and enhancing the efficacy of targeted therapies, chemotherapies, and immunotherapies. Despite this strong preclinical evidence and supporting retrospective population studies, clinical translation of ARBs in oncology remains inconsistent, with trials often limited by design, patient heterogeneity, and supra-therapeutic ARB dosages required for acute anti-cancer effects. This review seeks to summarise the current understanding of AT1R's role in cancer, highlight preclinical and clinical investigations of targeting RAS, and suggest further strategies to unlock its therapeutic potential. Realising the full therapeutic promise of AT1R targeting in oncology requires a multifaceted approach, including the development of innovative delivery systems, such as TME-activated ARBs, and the exploration of advanced therapeutic modalities, such as antibody based AT1R inhibitors. Rigorously designed clinical trials that include biomarker-driven patient stratification to identify responsive cohorts are crucial to define the context-dependent role of AT1R and conclusively establish its clinical utility as a combinatorial strategy to enhance patient outcomes.
Insights
Angiotensin II type 1 receptor (AT1R) blockers show promise in cancer therapy by inhibiting tumor growth and metastasis. Clinical translation is inconsistent, necessitating biomarker-driven trials for effective AT1R targeting in oncology.
Area of Science:
- Oncology
- Cardiovascular Pharmacology
- Cancer Biology
Background:
- The renin-angiotensin system regulates blood pressure and influences cancer progression via the angiotensin II type 1 receptor (AT1R).
- Elevated AT1R expression correlates with poor prognosis and treatment resistance in various cancers.
- AT1R activation promotes tumor proliferation, angiogenesis, and metastasis.
Purpose of the Study:
- To review the role of AT1R in cancer.
- To summarize preclinical and clinical investigations of targeting the renin-angiotensin system (RAS) in oncology.
- To propose strategies for optimizing AT1R-targeted cancer therapies.
Main Methods:
- Review of preclinical studies on AT1R inhibition by angiotensin receptor blockers (ARBs).
- Analysis of ARBs' effects on tumor microenvironment (TME) and therapeutic efficacy.
- Examination of clinical trial data and retrospective population studies on ARBs in cancer.
Main Results:
- Preclinical data demonstrate ARBs suppress tumor growth, induce apoptosis, reduce angiogenesis, and inhibit metastasis.
- ARBs modulate the TME, enhancing anti-tumor immunity and the effectiveness of other cancer treatments.
- Clinical translation of ARBs in oncology is inconsistent due to trial design and patient heterogeneity.
Conclusions:
- AT1R is a significant target in oncology, with strong preclinical support for ARB efficacy.
- Overcoming clinical translation challenges requires innovative delivery systems and advanced therapeutic modalities.
- Biomarker-driven clinical trials are essential to define AT1R's role and establish its utility in combination cancer therapy.
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