The overall of this proposal is to test in community hospitals the utility of a 10-min magnetic resonance imaging (MRI) scan protocol combined with proprietary image analysis algorithms for detecting early cardiovascular (CV) injury during receipt of chemotherapy for breast cancer (BrC) and lymphoma. This technology provides health-care delivery systems with a time-efficient method to identify those at risk of a future CV event so that prevention can be implemented to prolong survival and reduce morbidity in cancer survivors.
While recent research indicates that conventional MRI, advanced echocardiography (global longitudinal strain and 3D) and serum biomarkers can detect CV injury early after receipt of Chemotherapy, these methods require lengthy and difficult examinations that are not routinely executed in community hospitals where the majority of patients with BrC \& lymphoma are treated. Yet, 1-month deteriorations in traditional 45-min MRI measures are known to forecast 6-month subclinical deteriorations in left ventricular ejection fraction (LVEF) that are associated with CV events. At the same time, new observational data indicate therapy with HMG-CoA reductase inhibitors/statins administered early during receipt of Chemotherapy may prevent subsequent cardiac dysfunction and CV events. Our MRI fast scanning techniques remedy these community hospital implementation obstacles. In this proposal, the investigators propose to test the utility of these fast scans within an existing funded randomized clinical trial R01HL118740 of generic atorvastatin that is researching methods to prevent cardiotoxicity in patients treated with Chemotherapy for BrC and lymphoma (taking advantage of significant existing clinical trial resources). This study allows us to address our over-arching goal: to determine the optimal implementation (alone or in combination with other tests) of our proprietary MRI processes for forecasting CV injury in patients treated with Chemotherapy in community hospitals through performance of a Phase II comparative effectiveness study within an ongoing clinical trial.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
SUPPORTIVE_CARE
Masking
The fast MRI is a 10 minute MRI scan that will be used to determine if cardiovascular injury can be detected early while patients are receiving chemotherapy treatment.
Wake Forest School of Medicine
Winston-Salem, North Carolina, United States
Left Ventricular Ejection Fraction (LVEF) at Baseline, 2 Month Using Fast MRI, and 6 Months
To compare baseline, 2-month (using Fast MRI), and 6 month measures in left ventricular (LV) ejection fraction
Time frame: Baseline, 2 months, and 6 months
End Diastolic Volume (EDV) at Baseline, 2 Month, and 6 Months
To compare baseline, 2-month (using Fast MRI), and 6 month measures in end Diastolic Volume (EDV)
Time frame: Baseline, 2 months, and 6 months
End Systolic Volume (ESV) at Baseline, 2 Month, and 6 Months
To compare baseline, 2-month (using Fast MRI), and 6 month measures in end Systolic Volume (ESV)
Time frame: Baseline, 2 months, and 6 months
Pulse Wave Velocity (PWV) at Baseline and 6 Months
To compare baseline and 6 month measures in pulse wave velocity (PWV)
Time frame: Baseline and 6 months
Left Ventricular Ejection Fraction (LVEF): Comparison of Magnetic Resonance Imaging (MRI) With Echocardiogram (ECHO) at Baseline
To compare Magnetic Resonance Imaging (MRI) metric of Left Ventricular Ejection Fraction (LVEF) with Echocardiogram (ECHO) at baseline
Time frame: Baseline
End Diastolic Volume (EDV): Compare Magnetic Resonance Imaging (MRI) With Echocardiogram (ECHO) at Baseline
To compare magnetic resonance imaging (MRI) metric of End Diastolic Volume (EDV) with echocardiogram (ECHO) at baseline
Time frame: Baseline
End Systolic Volume (ESV): Compare Magnetic Resonance Imaging (MRI) With Echocardiogram (ECHO) at Baseline
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NONE
Enrollment
6
To compare magnetic resonance imaging (MRI) metric of End Systolic Volume (ESV) with echocardiogram (ECHO) at baseline
Time frame: Baseline