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Percutaneous Contrast Echocardiography-guided Intramyocardial Injection and Cell Delivery in a Large Preclinical Model
Published on: January 21, 2018
Common cardiovascular medications in cancer therapeutics
Christos Vaklavas1, Yiannis S Chatzizisis, Apostolia Maria Tsimberidou
1Phase 1 Program, Department of Investigational Cancer Therapeutics, The University of Texas M. D. Anderson Cancer Center, Houston, TX, USA.
Abstract:
Cardiac glycosides, statins, β-blockers, angiotensin-I converting enzyme inhibitors (ACEIs), and angiotensin II type 1 receptor blockers (ARBs) are widely used cardiovascular medications with pleiotropic properties. Many of these medications have been investigated in other diseases, including cancer. Cardiac glycosides and statins have advanced to clinical trial testing in cancer therapeutics, with variable success. Early observations in breast cancer were consistent with a more benign histologic phenotype among women taking digitalis compared to their counterparts who did not receive cardiac glycosides. Cardiac glycosides can induce apoptosis in cancer cells through various mechanisms and sensitize them to the effects of antitumor therapy. By blocking the generation of prenyl units, statins impair prenylation, an important posttranslational modification of proteins whose function depends on membrane anchoring. Statins also impair protein folding and N-glycosylation and inhibit the upregulation of cholesterol synthesis associated with chemotherapy resistance. Stress and catecholamine release promote tumor growth and angiogenesis, effects that can be mitigated by β-blockers. Components of the renin-angiotensin-aldosterone system are expressed in various cancers and are involved in carcinogenesis and tumor progression. Angiotensin II has potent mitogenic and angiogenic properties that can be blocked with ACEIs and ARBs. Although it is unclear whether the promising preclinical activity of many cardiovascular medications has clinically meaningful implications beyond the benefit in cardiovascular morbidity and mortality, the prevention or improvement of prognosis of common malignancies with medications known to reduce cardiovascular morbidity and mortality is encouraging and deserves further clinical investigation.
Insights
Cardiovascular drugs like cardiac glycosides and statins show promise in cancer therapy by inducing apoptosis and impairing cancer cell growth. Further clinical investigation is warranted for these repurposed medications.
Area of Science:
- Cardiology
- Oncology
- Pharmacology
Background:
- Cardiovascular medications possess pleiotropic properties, leading to investigations into their potential anticancer effects.
- Cardiac glycosides and statins have demonstrated preclinical anticancer activity and progressed to clinical trials.
- Other cardiovascular drugs, including beta-blockers, ACE inhibitors, and ARBs, also exhibit potential in cancer treatment.
Purpose of the Study:
- To review the potential anticancer mechanisms and clinical implications of widely used cardiovascular medications.
- To explore how cardiac glycosides, statins, beta-blockers, ACEIs, and ARBs may impact cancer development and progression.
Main Methods:
- Review of existing literature on cardiovascular drugs and their effects on cancer cells and tumor growth.
- Analysis of preclinical data and clinical trial results for these medications in cancer therapeutics.
Main Results:
- Cardiac glycosides induce apoptosis and sensitize cancer cells to therapy.
- Statins inhibit protein prenylation, folding, and N-glycosylation, and counteract chemotherapy resistance.
- Beta-blockers may mitigate tumor growth and angiogenesis promoted by stress and catecholamines.
- ACE inhibitors and ARBs can block the mitogenic and angiogenic effects of angiotensin II involved in carcinogenesis.
Conclusions:
- Cardiovascular medications demonstrate diverse anticancer mechanisms, including apoptosis induction, inhibition of key cellular processes, and modulation of tumor microenvironment.
- While promising, the clinical significance of these repurposed drugs in cancer treatment beyond cardiovascular benefits requires further rigorous investigation.
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