Pilot Study of an NTproBNP Guided Strategy of Cardioprotection
NCT04737265
Breast Cancer, Breast Diseases
Duarte, California, United States
View Trial DetailsNCT Number: NCT07680855
The goal of this observational study is to learn about the long-term effects of anthracycline chemotherapy on inflammation, oxidative stress, and heart function in adult women with breast cancer.
The main questions it aims to answer are:
1. Do inflammatory cytokine levels change after anthracycline chemotherapy and remain altered many years after treatment? 2. Are long-term markers of oxidative stress and antioxidant capacity associated with changes in heart structure or function after anthracycline exposure?
This study does not include a comparison group. All participants were previously treated with anthracycline-based chemotherapy as part of their standard cancer care.
Participants will:
1. Provide blood samples for the measurement of inflammatory cytokines and oxidative stress-related biomarkers 2. Undergo a clinical cardiovascular evaluation 3. Receive a transthoracic echocardiogram to assess heart function, including measures of systolic and diastolic function and myocardial deformation 4. Participate in a long-term follow-up assessment approximately 10 years after their initial cancer treatment
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Notify Me18 year–75 year
Female
Observational
Left ventricular global longitudinal strain (GLS) is assessed at long-term follow-up using semi-automated speckle-tracking techniques. Right ventricular-pulmonary artery coupling is explored using the Tricuspid Annular Plane Systolic Excursion (TAPSE)/Pulmonary Artery Systolic Pressure (PASP) ratio. All measurements are performed offline, and segments with inadequate image quality are excluded from analysis.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: From baseline (7 days before the first anthracycline chemotherapy cycle) to 10 years after completion of chemotherapy
Assessment of left ventricular systolic function by biplane Simpson method using transthoracic echocardiography. Left ventricular ejection fraction (LVEF) was measured at baseline (7 days before the first cycle of anthracycline chemotherapy) and at the 10-year follow-up.
Time frame: From baseline (7 days before the first anthracycline chemotherapy cycle) to 10 years after completion of chemotherapy
Assessment of left ventricular diastolic function using the average E/e' ratio obtained by transthoracic echocardiography. Measurements were performed at baseline (7 days before the first cycle of anthracycline chemotherapy) and at the 10-year follow-up.
Time frame: 10 years after completion of chemotherapy
Assessment of left ventricular global longitudinal strain (LVGLS) using speckle-tracking echocardiography at the 10-year follow-up. Baseline LVGLS measurements were not available; therefore, only long-term values were assessed.
Time frame: 10 years after completion of chemotherapy
Assessment of left atrial volume index (LAVI) by transthoracic echocardiography as an indicator of long-term left atrial remodeling after anthracycline exposure.
Time frame: 10 years after completion of chemotherapy
Assessment of right ventricular-pulmonary arterial coupling using the tricuspid annular plane systolic excursion (TAPSE) to pulmonary artery systolic pressure (PASP) ratio obtained by transthoracic echocardiography.
Time frame: Baseline (7 days before the first anthracycline chemotherapy cycle), day 3 after the first anthracycline chemotherapy cycle (cycle length: 21 days), and 10 years after completion of chemotherapy.
Assessment of systemic antioxidant capacity using the ferric reducing ability of plasma (FRAP) assay. Plasma samples were obtained at baseline (7 days before the first anthracycline chemotherapy cycle), on day 3 after the first chemotherapy cycle , and at the 10-year follow-up.
Time frame: Baseline (7 days before the first anthracycline chemotherapy cycle), day 3 after the first anthracycline chemotherapy cycle (cycle length: 21 days), and 10 years after completion of chemotherapy.
Assessment of erythrocyte antioxidant enzyme activity by measuring superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GSH-Px) activities using standardized commercial assays. These enzymes were evaluated as complementary indicators of endogenous antioxidant defense mechanisms.
Time frame: Baseline (7 days before the first anthracycline chemotherapy cycle), day 3 after the first anthracycline chemotherapy cycle (cycle length: 21 days), and 10 years after completion of chemotherapy.
Assessment of oxidative stress by measuring plasma 8-isoprostane concentrations and intracellular redox status using the reduced-to-oxidized glutathione (GSH/GSSG) ratio.
Time frame: Baseline (7 days before the first anthracycline chemotherapy cycle), and day 3 after the first anthracycline chemotherapy cycle (cycle length: 21 days).
Assessment of the systemic inflammatory cytokine profile using a validated MILLIPLEX® multiplex bead-based immunoassay based on Luminex® xMAP® technology. Plasma cytokines were measured simultaneously as a single multiplex biomarker panel comprising inflammatory cytokines and chemokines, including interleukin-1 beta (IL-1β), interleukin-6 (IL-6), tumor necrosis factor alpha (TNF-α), interleukin-10 (IL-10), monocyte chemoattractant protein-1 (MCP-1), vascular endothelial growth factor (VEGF), interferon gamma (IFN-γ), and additional analytes included in the assay. This outcome represents the overall inflammatory biomarker profile generated by a single multiplex assay rather than multiple independent outcome measures.
University of Chile
Other
Long-Term Effects of Anthracycline Chemotherapy on Inflammatory Cytokines, Redox Status, and Ventricular Function in Breast Cancer Survivors
Acronym: ANTIOX-10
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