Ipilimumab
DrugIpilimumab blocks CTLA-4 and may deplete regulatory T cells
Other names: Yervoy
NCT Number: NCT03409198
Breast cancer is rarely curable after metastasis, and the therapeutic options are limited. Interestingly, the host immune response is strongly predictive for the effect of chemotherapy in subgroups of patients with breast cancer. The aim is to release the brake on the immune response by use of ipilimumab, which blocks CTLA-4 and may deplete regulatory T cells, combined with nivolumab (anti PD1). Importantly, it is possible that non-responders to nivolumab/ipilimumab (nivo/ipi) can be turned responders by use of immunogenic chemotherapy.
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Notify Me18 year and older
All sexes
Interventional
Phase 2
Cliniques universitaires Saint-Luc, Brussels, Brussels Capital, Belgium
There is compelling evidence from animal studies, supported by data from humans, that some chemotherapeutic agents are immunogenic. Doxorubicin and cyclophosphamide have been shown to be particularly powerful inducers of immunogenic cell death. Both agents fulfil 5/5 criteria established for assessing the immunogenicity of different chemotherapeutic drugs. There is also strong evidence from humans, particularly in breast cancer, indicating that the clinical effect of doxorubicin and cyclophosphamide depends on the host immune response. Further, these agents have been shown to induce a Type I interferon immune response in breast cancer. Taken together, there is a strong rationale for synergy between doxorubicin/cyclophosphamide and PD-1/CTLA-4 blockade. The trial combines nivolumab and ipilimumab with established 1st choice chemotherapy in patients with metastatic hormone reseptor positive breast cancer. Nivolumab/ipilimumab (nivo/ipi) may i) potentiate the patient´s spontaneous anti-tumor immune response ii) synergize with chemotherapeutic agents that induce immunological cell death
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
a. Seasonal influenza vaccines for injection are generally inactivated flu vaccines and are allowed; however intranasal influenza vaccines (e.g., Flu-Mist®) are live attenuated vaccines, and are not allowed.
Ipilimumab blocks CTLA-4 and may deplete regulatory T cells
Other names: Yervoy
Nivolumab blocks PD-1 and thereby enhances the effector phase of the immune reaction, by enabling T cells to kill tumor cells and engage effectively with other PD-L1 expressing targets.
Other names: Opdivo
Chemotherapy
Chemotherapy
Time frame: 3 years
Assessment of toxicity of combined treatment with ipilimumab, nivolumab, pegylated liposomal doxorubicin and cyclophosphamide (ipi/nivo/chemo)
Time frame: We expect to reach the data-driven time point for PFS-analysis (95% PFS in the control group) approximately 3 years after the study opens. If this is not met within 24 months after inclusion of the last patient, the PFS-analysis will be performed at this
Assessment of clinical response in ipi/nivo/chemo group compared to chemo only group: Progression-free survival (PFS); compare the PFS rates when 95% of patients in the control croup have PD
Time frame: 3 years
Assessment of clinical response in ipi/nivo/chemo group compared to chemo only group: duration of response (DR)
Time frame: 5 years
Assessment of clinical response in ipi/nivo/chemo group compared to chemo only group: overall survival (OS)
Time frame: 3 years
Assessment of clinical response in ipi/nivo group: duration of response (DR)
Time frame: 5 years
Assessment of clinical response in ipi/nivo group: overall survival (OS)
Time frame: 3 years
Assessment of toxicity of ipi/nivo (without chemotherapy) in cross-over arm
Time frame: 3 years
Assessment of clinical response in ipi/nivo/chemo group compared to chemo only group: Objective tumor response rate (ORR)
Time frame: 3 years
Assessment of clinical response in ipi/nivo/chemo group compared to chemo only group: durable tumor response rate (DRR; >6 months)
Time frame: 3 years
Assessment of clinical response in ipi/nivo group: Objective tumor response rate (ORR)
Time frame: 3 years
Assessment of clinical response in ipi/nivo group: durable tumor response rate (DRR; >6 months)
Time frame: 3 years
Proportion of patients with an objective tumor response or with stable disease lasting at least 6 months
Time frame: 3 years
Proportion of patients with an objective tumor response or with stable disease lasting at least 6 months
Time frame: 3 years
Assessment of PD-L1 expression, mutation load and immune gene expression as biomarkers for clinical response
Time frame: 3 years
Assessment of patient reported outcomes, as measured by the Chalder Fatigue Questionnaire (FQ)
Time frame: 3 years
Assessment of patient reported outcomes, as measured by an 11 point Numerical Rating Scale (NRS) for pain intensity
Time frame: 3 years
Assessment of patient reported outcomes, as measured by the EORTC QLQ-C15-PAL
Time frame: 3 years
Comparison of clinical and biological response in molecular subtypes of breast cancer
Time frame: 3 years
Assessment of immunological response. In selected patients, the specificity of T-cell responses will be analysed. The analysis will be based neoantigen prediction and will be performed by multimer technology.
Time frame: 3 years
Identification of biomarkers for clinical response by use of gene profiling, pathology, cytokine assays and other analysis on material from study patients. The following predefined biomarkers will be compared between responders and non-responders: PD-L1 in biopsies, immune gene signature in biopsies. Further explorative investigations will be performed to identify new candidate biomarker signatures.
Time frame: 3 years
Identification of biomarkers for toxicity by use of gene profiling, pathology, cytokine assays and other analysis on material from study patients. The analysis is explorative and will be performed to identify new candidate biomarker signatures. The candidate signatures will be compared between patients with and without immune related adverse events.
Time frame: 3 years
Considering each study arm separately, and by comparing arm A to arm B. The assessment will be performed by flow cytometry and CyTOF of immune cells, and by gene expression profiling of tumor biopsies. In periferal blood,the frequency of immune cell subsets will be determined and compared between baseline and later timepoints. In biopsies, gene expression profiles will be compared between baseline and later timepoints.
Oslo University Hospital
Other
A Randomized Phase IIb Study Evaluating Immunogenic Chemotherapy Combined With Ipilimumab and Nivolumab in Patients With Metastatic Hormone Reseptor Positive Breast Cancer
Acronym: ICON
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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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