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NCT Number: NCT07223385

High Cardiovascular Risk Intervention With Cardio-Oncology Consultation for Prostate Cancer Following Androgen Receptor Pathway Inhibitor (ARPI) Therapy (Heart-Safe)

In patients with prostate cancer (PC), cardiovascular disease (CVD) causes significant morbidity and is the second leading cause of death. Both pre-existing CVD and the use of androgen deprivation therapy (ADT)-a key cornerstone of treatment for men with locally advanced or metastatic PC1,2 contribute to increased CV risk. ADT has been associated with adverse metabolic effects, including increased central adiposity, elevated low-density lipoprotein (LDL) levels, impaired glycemic control, and arterial wall remodeling and endothelial dysfunction

The data demonstrates that for most patients, the status quo is insufficient6 and there remains a critical gap in the early identification of high CV-risk PC patients who may benefit most from aggressive risk mitigation strategies. Mitigation strategies, like the addition of statins as primary prevention, have shown decrease in MI/CHD death across thousands of patients. Age-related expansion of hematopoietic clones carrying recurrent somatic mutations, termed clonal hematopoiesis of indeterminate potential (CHIP) has recently been identified as a significant driver of atherosclerosis, doubling the risk of coronary heart disease. Notably, while CHIP is detectable in ~10% of persons over 70 years old, it is enriched in patients with solid malignancies, and radiotherapy exposure is among the most decisive risk factors for developing CHIP12-15. The inflammation-related metabolic signals are activated androgen signaling and exacerbated in patients with CHIP. However, the mechanistic link and clinical consequence are less understood. Therefore, it is critical to study the CV impact of CHIP and metabolic perturbations in patients with PC treated with ARSI therapy.

We plan to address these critical gaps by testing our innovative hypothesis that early cardio-oncology intervention with aggressive guidelines-based CV optimization during ARPI therapy will reduce CV risk and that CHIP and metabolomics will help identify adverse metabolic remodeling to improve CV risk prediction.

Robust epidemiological and clinical trial data consistently demonstrate that patients with PC are poorly optimized from a CV risk modification perspective, and existing CV risk models do not perform well in patients with cancer. The data demonstrates that for most patients, the status quo is insufficient and there remains a critical gap in the early identification of high CV-risk PC patients who may benefit most from aggressive risk mitigation strategies.

Recruiting

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Key information

Age range

45 year and older

Sex eligibility

Male

Study type

Interventional

Phase

Phase 2

Primary location

Cedars Sinai Medical Center

Los Angeles, California, 90048, United States

Location status: Recruiting

Location contact

Clinical Trial Recruitment Navigator

CONTACT

[email protected]

13104232133

Katelyn Atkins, MD, PhD

PRINCIPAL_INVESTIGATOR

Leslie Ballas, MD

PRINCIPAL_INVESTIGATOR

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Prostate cancer with localized, very-high risk, lymph-node positive, and/or metastatic (Stage IV) disease.
  • Being treated with ARPI therapy with intended duration ≥ 18 months.
  • Age > 65 years old and at least one CV risk factor, or age 45-65 years with at least two CV risk factors:
  • Hypertension
  • Hyperlipidemia
  • Diabetes mellitus
  • Family history of early CAD (male first-degree relative (father or brother) with CAD before age 55; female first-degree relative (mother or sister) with CAD before age 65)
  • Presence of coronary artery calcium (CAC) on chest CT imaging
  • ECOG 0-2
  • Written informed consent obtained from subject and ability for subject to comply with the requirements of the study.

Exclusion criteria

  • Prior ARPI therapy exposure > 6 months duration.
  • Established care with cardio-oncologist (cardiologist with expertise in CV risks of cancer and cardiotoxic cancer therapies).

Treatment and study plan

Cardio-Oncology Referral

Other

Referral to cardio-oncology for guidelines-based personalized cardio-oncology management

Notification to PCP/General Cardiologist

Other

Notification to patient's primary care physician and/or general cardiologist and recommendation for CV risk optimization after initiation of ARPI therapy

Primary outcomes

  1. Rate of any CV medication Initiation and/or Change

    Time frame: 3 Months Post-Intervention

    To evaluate the rate of any CV medication initiation and/or change at 3-months following cardio-oncology consultation versus standard of care. Rate of any CV medication intervention at 3-months (Note: CV medication defined as: lipid-lowering, anti-hypertensive, anti-anginal, anti-platelet, anti-arrhythmic, heart failure medications)

Secondary outcomes

  1. The Rate of Compliance with CV Therapeutic Medication Intervention

    Time frame: 6 and 12 Months Post Intervention

    To determine the rate of compliance with CV therapeutic medication intervention at 6 and 12 months

  2. Rate of Statin Intervetion

    Time frame: 3 Months Post Intervention

    To determine the rate of statin intervention at 3 months

  3. Rate of Compliance with Statin Medication Intervention

    Time frame: 6 and 12 Months Post Intervention

    To determine the rate of compliance with statin medication intervention at 6 and 12 months

  4. Rate of any CV Medication Intervention

    Time frame: 6 Months Post-Intervention

    To determine the rate of any CV medication intervention at 6 months

  5. Changes in Biological CV Risk Factor

    Time frame: 3, 6, and 12 Month Post-Intervention

    To assess changes in biological CV risk factors (low density lipoprotein [LDL])

  6. Changes in Biological CV Risk Factor

    Time frame: 3, 6, and 12 Month Post-Intervention

    To assess changes in biological CV risk factors (systolic blood pressure)

  7. Changes in Biological CV Risk Factor

    Time frame: 3, 6, and 12 Month Post-Intervention

    To assess changes in biological CV risk factors (hemoglobin A1c)

  8. Changes in Biological CV Risk Factor

    Time frame: 3, 6, and 12 Month Post-Intervention

    To assess changes in biological CV risk factors (body mass index)

  9. Rate of Coronary Artery Disease Testing

    Time frame: 3, 6, and 12 Month Post-Intervention

    To determine the rate of coronary artery disease (CAD) testing (coronary CT angiograms, CAC scans, stress tests, and invasive coronary angiograms)

  10. Rate of new CV or Cardiac Diagnosis

    Time frame: 3, 6, and 12 Month Post-Intervention

    To determine the rate of new CV or cardiac diagnosis

  11. One-Year MACE Rate

    Time frame: 12 Months Post-Intervention

    To determine the one-year MACE rate

  12. Rate of Grade ≥ 2 Cardiac CTCAE

    Time frame: 12 Month Post-Intervention

    To determine one-year rate of grade ≥ 2 cardiac common terminology criteria for adverse events (CTCAE)

Study contacts

Contact information is provided by the study sponsor or research team.

Clinical Trial Recruitment Navigator

CONTACT

[email protected]

13104232133

Sponsors and collaborators

Lead sponsor

Cedars-Sinai Medical Center

Other

Registry information

Important dates

Study start
2026
Primary completion
2030
Study completion
2030
First posted
Oct 31, 2025
Registry last updated
Jun 29, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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