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Exercise in Triple- Negative Breast Cancer

Exercise in Regional Breast Cancer With Neoadjuvant Anthracycline- Based Chemotherapy and Immunotherapy With Checkpoint-Inhibition

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06672120
Acronym
ExACT-ICI
Enrollment
120
Registered
2024-11-04
Start date
2025-04-03
Completion date
2028-12-31
Last updated
2025-05-31

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cancer, Breast

Brief summary

This is a prospective, randomized, controlled mono-center study investigating the effects of a combined, supervised aerobic exercise and resistance training in female patients with newly diagnosed, therapy-naive triple-negative breast cancer (TNBC, stage I-III) between 18 and 50 years of age scheduled for anthracycline-based chemotherapy and immunotherapy with checkpoint inhibitors. All patients will receive smart watches for rhythm monitoring. Patients will be randomized (1:1) into a control group, receiving 24 weeks of standard exercise recommendations during neoadjuvant therapy, and an intervention group receiving 24 weeks of home-based, video-supervised exercise training consisting of endurance and resistance training. The primary endpoint is the change of peak oxygen consumption (VO2peak) between baseline and 24 weeks in the groups. Secondary endpoints include changes of physical function (short physical performance battery, SPPB), as well as cardiac biomarkers, quality of life, and changes of strength of the upper and lower body between baseline and 24 weeks. In addition, variables of cardiopulmonary exercise testing (CPET), resting and stress echocardiography, and burden of atrial fibrillation (AF) will be assessed. All changes in variables will be analyzed from baseline until 52 weeks as well. Both groups will receive standard exercise recommendations after 24 weeks and will be followed-up by clinical examination after 52 weeks. Echocardiographic variables (at rest and during exercise), quality of life, CPET, SPPB, strength testing, burden of AF, and cardiac biomarkers will be assessed. Changes between the end of the intervention period 24 weeks after diagnosis and the end of follow-up after 52 weeks will be analyzed. In addition, changes in variables between baseline and 52 weeks will be analyzed. As an exploratory endpoint the incidence of cancer therapy-related cardiac dysfunction (CTRCD) and immune-checkpoint inhibitor- associated myocarditis (ICI-myocarditis) will be assessed after 24 and 52 weeks.

Detailed description

This is a prospective, randomized, controlled mono-center study investigating the effects of a combined, supervised aerobic exercise and resistance training in female patients with newly diagnosed TNBC (stage I-III) between 18 and 65 years of age scheduled for anthracycline-based chemotherapy and immunotherapy with checkpoint inhibitors. All patients will receive smart watches for rhythm monitoring. Patients will be advised to trigger electrocardiogram (ECG) measurements every day at 8 a.m., 2 p.m. and 8 p.m. as well as before and immediately after every training session (intervention group only). In addition, ECG should be recorded whenever symptoms occur. Patients will be randomized (1:1) into a control group, receiving 24 weeks of standard exercise recommendations during neoadjuvant therapy, and an intervention group receiving 24 weeks of home-based, video-supervised exercise training consisting of endurance and resistance training. At baseline clinical examination, quality of life, cardiac biomarkers, resting and stress echocardiography and CPET will be performed. SPPB and strength of the upper and lower body will be assessed. Training in the intervention group will be performed 5x/week with 20 minutes/session and will contain resistance training and endurance training as a mixture between moderate continuous and high-intensity interval training. Training corridors based on heart rate will be prescribed with the aid of CPET testing at baseline and during follow-up visits. Intensity will be progressively increased, but will be individually adapted to the schedule and response to chemo- and immunotherapy. Follow-up visits will be performed six and twelve weeks after diagnosis and clinical examination, cardiac biomarkers, resting and stress echocardiography and CPET as well as testing of muscle strength, SPPB, and quality of life will be repeated. Prescribed training corridors of heart rate will be adapted after each test. Upon clinical suspicion for adverse events, such as ICI-myocarditis, magnetic resonance imaging of the heart will be performed and training will not be continued. The primary endpoint is the change of VO2peak between baseline and 24 weeks in the groups. Secondary endpoints include changes of variables between baseline and 24 weeks, including SPPB, cardiac biomarkers, quality of life, changes of strength of the upper and lower body (knee extensor and biceps muscles), variables of CPET, resting and stress echocardiography, and burden of AF. Changes in variables between baseline and after 52 weeks will also be analyzed. 24h- Holter monitoring will be performed at the end of weeks 24 and 52. Both groups will receive standard exercise recommendations after 24 weeks and will be followed-up by clinical examination after 52 weeks: Resting and stress echocardiography, quality of life, CPET, SPPB, strength testing, AF burden, and cardiac biomarkers will be re-assessed. As an exploratory endpoint the incidence CTRCD and ICI-myocarditis will be assessed after 24 and 52 weeks.

Interventions

BEHAVIORALExercise training

Combined, home-based, supervised, video- assisted, endurance and resistance training

Sponsors

Technical University of Munich
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
DOUBLE (Investigator, Outcomes Assessor)

Masking description

The principal investigator, who will assess outcomes, will be blinded to group allocation. Patients will be randomized by a staff member. Data analysis will be done by a professional statistician.

Intervention model description

Patients diagnosed with TNBC and scheduled for immuno-chemotherapy will be randomized (1:1) into an intervention group receiving combined endurance and resistance training and a control group receiving standard exercise recommendations.

Eligibility

Sex/Gender
FEMALE
Age
18 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

* Female patients with newly diagnosed, local triple-negative breast cancer (stage I-III) ≥ 18 to 65 years of age scheduled for immunochemotherapy with pembrolizumab and anthracycline-based chemotherapy

Exclusion criteria

* Unstable cardiac condition (clinical suspicion of progress or unstable coronary artery disease, signs of acute heart failure, haemodynamically relevant arrhythmias) * Orthopaedic disability to exercise

Design outcomes

Primary

MeasureTime frameDescription
Peak oxygen consumption (VO2peak) from baseline until the end of intervention24 weeksDifference of VO2peak between baseline to the end of intervention per group

Secondary

MeasureTime frameDescription
VO2peak from the end of intervention to the end of follow-up28 weeksDifference of VO2peak between the end of intervention and the end of follow-up per group
Burden of atrial fibrillation (AF) from baseline to the end of intervention24 weeksBurden of AF will be assessed with 24h-Holter monitoring at the end of week 24 and with patient-triggered documentation through smart watch monitoring. ECG triggering will be done every day throughout the study at 8 a.m., 2 p.m., 8 p.m., before and immediately after exercise, or with perceived symptoms
Burden of AF from baseline to the end of follow-up52 weeksBurden of AF will be assessed with 24h-Holter monitoring at the end of week 24 and 52 and with patient-triggered documentation through smart watch monitoring. ECG triggering will be done every day throughout the study at 8 a.m., 2 p.m., 8 p.m., before and immediately after exercise, or with perceived symptoms
Burden of AF from the end of intervention to the end of follow-up28 weeksBurden of AF will be assessed with 24h-Holter monitoring at the end of week 24 and 52 and with patient-triggered documentation through smart watch monitoring. ECG triggering will be done every day throughout the study at 8 a.m., 2 p.m., 8 p.m., before and immediately after exercise, or with perceived symptoms
Performance in short physical performance battery (SPPB) from baseline to end of intervention24 weeksValues range from 0 (worst performance) to 12 (best performance)
Performance in SPPB from the end of intervention to the end of follow-up28 weeksValues range from 0 (worst performance) to 12 (best performance)
Performance in SPPB from baseline to the end of follow-up52 weeksValues range from 0 (worst performance) to 12 (best performance)
Improvement of muscle strength of the upper (biceps curl) and lower extremity (knee extensor) from baseline to the end of intervention24 weeksA one repetition maximum test (1 RPM) will be done for both tests
Improvement of muscle strength of the upper (biceps curl) and lower extremity (knee extensor) from baseline to the end of follow-up52 weeks1 RPM will be done for both tests
Improvement of muscle strength of the upper (biceps curl) and lower extremity (knee extensor) from the end of intervention to the end of follow-up28 weeks1 RPM will be done for both tests
Changes of resting and stress echocardiographic variables from baseline to the end of intervention24 weeksLeft ventricular ejection fraction will be measured at rest and peak exercise
Changes of resting and stress echocardiographic variables from baseline to the end of follow-up52 weeksLeft ventricular ejection fraction will be measured at rest and peak exercise
VO2peak from baseline to the end of follow-up52 weeksDifference of VO2peak between baseline to the end of follow-up per group
Cardiac biomarkers from baseline to the end of intervention24 weeksChange in troponin I and NTproBNP from baseline to the end of intervention
Cardiac biomarkers from the end of intervention to the end of follow-up28 weeksChange in troponin I and NTproBNP from the end of intervention to the end of follow-up
Cardiac biomarkers from baseline to the end of follow-up52 weeksChange in troponin I and NTproBNP from baseline to the end of follow-up
Change in quality of life from baseline to the end of intervention24 weeksChange in EORTC QLQ-C30 (European Organization for Research and Treatment of Cancer Quality of Life Questionnaire). Values range from 0 to 100, with 100 showing the best quality of life and 0 the worst.
Change in quality of life from the end of intervention to the end of follow-up28 weeksChange in EORTC QLQ-C30 (European Organization for Research and Treatment of Cancer Quality of Life Questionnaire). Values range from 0 to 100, with 100 showing the best quality of life and 0 the worst.
Change in quality of life from baseline to the end of follow-up52 weeksChange in EORTC QLQ-C30 (European Organization for Research and Treatment of Cancer Quality of Life Questionnaire). Values range from 0 to 100, with 100 showing the best quality of life and 0 the worst.
Incidence of immune-checkpoint inhibitor associated myocarditis (ICI-myocarditis) from baseline to the end of follow-up52 weeksICI myocarditis is defined as signs of myocarditis on magnetic resonance imaging of the heart according to the modified Lake Louis criteria and positive troponin I levels or positive troponin levels and two additional side criteria (clinical symptoms, reduction in left ventricular ejection fraction, strain, or wall motion abnormalities, or other immune-related side effects, or arrhythmias)
Decrease of minute ventilation to carbon dioxide production (VE/VCO2) from baseline to the end of intervention24 weeksChange in VE/VCO2 during CPET
Decrease of VE/VCO2 from baseline to the end of follow-up52 weeksChange in VE/VCO2 during CPET
Decrease of VE/VCO2 from the end of intervention to the end of follow-up28 weeksChange in VE/VCO2 during CPET
Incidence of cancer treatment-related cardiac dysfunction (CTRCD) from baseline to the end of follow-up52 weeksCTRCD is defined as a reduction of left ventricular ejection fraction ≥10% to 40-49% OR a reduction of \<10% to 40-49% AND a decline of strain \>15% of the baseline OR a new rise cardiac biomarkers
Changes of resting and stress echocardiographic variables from the end of intervention to the end of follow-up28 weeksLeft ventricular ejection fraction will be measured at rest and peak exercise

Countries

Germany

Contacts

Primary ContactMartin Halle, MD
martin.halle@mri.tum.de+49 89-289 244 41

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 7, 2026