Actinium Ac 225 Lintuzumab
RadiationGiven IV
Other names: 225Ac-HuM195, Actimab-A, Actinium (225Ac) Lintuzumab Satetraxetan, Actinium-225-Labeled Humanized Anti-CD33 Monoclonal Antibody HuM195, LINTUZUMAB SATETRAXETAN AC-225, SGN-33 AC-225
NCT Number: NCT07422363
This phase I trial studies the side effects and best dose of Actimab-A when given together with cemiplimab (REGN2810) in treating patients with glioblastomas that have come back after a period of improvement (recurrent). Actimab-A consists of the monoclonal antibody lintuzumab combined with the radioactive drug actinium Ac 225. Lintuzumab specifically binds to the cell surface antigen CD33 which is found on the glioblastoma cells and delivers the actinium Ac 225. This may allow the glioblastoma to be found and treated by Actimab-A. Immunotherapy with monoclonal antibodies, such as cemiplimab (REGN2810), may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving Actimab-A with cemiplimab (REGN2810) may be safe, tolerable and/or effective in treating recurrent glioblastoma.
Trial opening soon.
Get Notified18 year and older
All sexes
Interventional
Phase 1
PRIMARY OBJECTIVE:
I. To determine the maximum tolerated dose (MTD) and recommended phase 2 dose (RP2D) of actinium Ac 225 lintuzumab (Actimab-A) in combination with cemiplimab (REGN2810) in recurrent glioblastoma.
SECONDARY OBJECTIVES:
I. To observe and record anti-tumor activity. II. To evaluate the impact of baseline tumor mutational burden on response. III. To evaluate the pharmacokinetics of cemiplimab (REGN2810). IV. To evaluate the alpha radiation dosimetry of Actimab-A.
EXPLORATORY OBJECTIVES:
I. To evaluate circulating tumor deoxyribonucleic acid (DNA) (ctDNA) as a predictor for treatment response.
II. To evaluate the impact of baseline tumor expression signatures on response. III. To evaluate the correlation of changes in cytokine production and arginase activity with response.
IV. To evaluate the impact of combination treatment on peripheral immune cells. V. To correlate adverse events (AEs) with absorbed doses of radiation to organs at risk (OARs) such as the kidneys.
OUTLINE: This is a dose-escalation study of Actimab-A in combination with cemiplimab.
Patients receive Actimab-A intravenously (IV) over 30 minutes on either days 1 and 22 of cycles 1-3, days 1 and 22 of cycles 1 and 2, or days 1 and 22 of cycle 1 and day 1 of cycle 2. Patients also receive cemiplimab IV over 30 minutes on days 1 and 22 of each cycle. Cycles repeat every 42 days for up to 3 cycles in the absence of disease progression or unacceptable toxicity. Additionally, patients undergo blood sample collection and radiologic imaging throughout the study and positron emission tomography (PET)/computed tomography (CT) on study. Patients may also optionally undergo single-photon emission computed tomography (SPECT)/CT on study.
After completion of study treatment, patients are followed up at 3 weeks, 30 days, and then every 3 months for up to 2 years.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Treatment with systemic immunosuppressive medication (including, but not limited to, corticosteroids, cyclophosphamide, azathioprine, methotrexate, thalidomide, and anti-tumor necrosis factor-alpha [TNF-α] agents) within two (2) weeks prior to initiation of study treatment, or anticipation of need for systemic immunosuppressive medication during study treatment, with the following exceptions:
Given IV
Other names: 225Ac-HuM195, Actimab-A, Actinium (225Ac) Lintuzumab Satetraxetan, Actinium-225-Labeled Humanized Anti-CD33 Monoclonal Antibody HuM195, LINTUZUMAB SATETRAXETAN AC-225, SGN-33 AC-225
Undergo blood sample collection
Other names: Biological Sample Collection, Biospecimen Collected, Sample Collection, Specimen Collection
Given IV
Other names: Cemiplimab RWLC, Cemiplimab-rwlc, Libtayo, REGN 2810, REGN-2810, REGN2810
Undergo PET/CT and/or SPECT/CT
Other names: CAT, CAT Scan, Computed Axial Tomography, Computerized Axial Tomography, Computerized axial tomography (procedure), Computerized Tomography, Computerized Tomography (CT) scan, CT, CT Scan, Diagnostic CAT Scan, Diagnostic CAT Scan Service Type, tomography
Undergo PET/CT
Other names: Medical Imaging, Positron Emission Tomography, PET, PET Scan, Positron emission tomography (procedure), Positron Emission Tomography Scan, Positron-Emission Tomography, PT
Undergo radiologic imaging
Undergo SPECT/CT
Other names: Medical Imaging, Single Photon Emission Computed Tomography, Single Photon Emission Tomography, Single-Photon Emission Computed, single-photon emission computed tomography, SPECT, SPECT imaging, SPECT SCAN, SPET, ST, tomography, emission computed, single photon, Tomography, Emission-Computed, Single-Photon
Time frame: Up 6 weeks after initiating treatment
DLT is defined as any grade ≥ 3 non-hematologic toxicity regardless of supportive care or grade ≥ 4 hematologic toxicity per Common Terminology Criteria for Adverse Events (CTCAE) version 5.0 that occurs during the first six (6) weeks after initiating treatment. DLTs per CTCAE version 5.0 will be tabulated for each dose level.
Time frame: Up to 18 months
Will use a Bayesian optimal interval design to find the MTD. Recommended phase 2 dose determination will include both the DLT period for the MTD, as well as consideration of later cycle adverse events (AEs) and the overall safety profile, and available correlatives and will be determined by the study team and Cancer Therapy Evaluation Program collaborators.
Time frame: Up to 30 days after last dose of study drug
AEs per CTCAE version 5.0 will be tabulated for each dose level.
Time frame: Up to 2 years
Treatment response will be assessed for all patients based on Response Assessment in Neuro-Oncology 2.0 (RANO 2.0) criteria: complete response (CR), partial response (PR), stable disease (SD), and progression of disease (PD). ORR is defined as the addition of CR and PR. ORR rate will be calculated by the proportion of evaluable patients with objective response (CR/PR), along with its exact 95% confidence interval (CI).
Time frame: From randomization or initiation of treatment to the occurrence of disease progression or death, assessed up to 2 years
Treatment response will be assessed for all patients based on RANO 2.0 criteria: CR, PR, SD, and PD. Kaplan-Meier estimates will be provided. The corresponding median survival time (with 95% CI) will be determined.
Time frame: From date of diagnosis until the patient's death from any cause, assessed up to 2 years
Treatment response will be assessed for all patients based on RANO 2.0 criteria: CR, PR, SD, and PD. Kaplan-Meier estimates will be provided. The corresponding median survival time (with 95% CI) will be determined.
Time frame: At baseline
Will evaluate the impact of baseline TMB on response. TMB will be evaluated in each patient and correlation assessment will be performed with clinical activity by Spearman's correlation coefficient. Will also use a logistic regression model to test the association between TMB and ORR.
Time frame: At cycle (C) 1 day (D) 1, C1D22, C2D1, C2D22, C3D1, and C3D22 (Cycle = 42 days)
Will evaluate the pharmacokinetics (PK) of cemiplimab (REGN2810). PK exposure values will be reported descriptively.
Time frame: At 4 hours, 24, 48, and 168 hours post-actinium Ac 225 lintuzumab (Actimab-A) during C2 (Cycle = 42 days)
Will evaluate the alpha radiation dosimetry of Actimab-A. Absorbed dose calculations will be performed following Imaging and Radiation Core guidelines and Medical Internal Radiation Dose Committee methodology, assuming a relative biologic effect of five patients for alpha particles. The absorbed dose estimates to critical organs of each patient at the various administered activity levels will be tabulated using descriptive statistics. A paired T-test, or Wilcoxon signed-rank test if the data is not normally distributed, will be used to detect differences in absorbed dose between time points.
Time frame: Baseline to C3 (Cycle = 42 days)
Will evaluate ctDNA as a predictor for treatment response. The detectable VAFs will be assessed and trended during the course of treatment. VAF change will be assessed categorically for each patient (increased or decreased at start of C3 as compared to baseline). The association of VAF change with objective response will be tested using the Fisher's exact test, where p < 0.05 will be considered statistically significant.
Time frame: At C1D1, C1D8, C1D22, C2D1, C2D22, C3D1, C3D22, and progression of disease (Cycle = 42 days)
Will evaluate the impact of baseline tumor expression signatures on response. Expression levels will be evaluated in each patient and correlation assessment will be performed between T-cell density, gene response set values and other endpoints such as clinical response by Spearman's correlation coefficient.
Time frame: At baseline
Will evaluate the impact of baseline tumor expression signatures on response. Expression levels will be evaluated in each patient and correlation assessment will be performed with clinical response by Spearman's correlation coefficient.
Time frame: At C1D1, C1D8, C1D22, C2D1, C2D22, C3D1, C3D22, and progression of disease (Cycle = 42 days)
Will evaluate the correlation of changes in cytokine production and arginase activity with response. ELISA will quantify interferon gamma evaluated in each patient over time (paired), and between patients (non paired), from baseline to each blood draw at a significance level (alpha) of 0.05, and correlated with objective response will be tested using the Fisher's exact test, where p < 0.05 will be considered statistically significant.
Time frame: At C1D1, C1D8, C1D22, C2D1, C2D22, C3D1, C3D22, and progression of disease (Cycle = 42 days)
Will evaluate the correlation of changes in cytokine production and arginase activity with response. Arginase activity will be evaluated in each patient over time (paired), and between patients (non paired), from baseline to each blood draw with a parametric (such as t-test) or non-parametric (such as Wilcoxon signed rank / rank sum) test depending on whether the data is normally distributed at a significance level (alpha) of 0.05, and correlated with objective response will be tested using the Fisher's exact test, where p < 0.05 will be considered statistically significant.
Time frame: At C1D1, C1D8, C1D22, C2D1, C2D22, C3D1, C3D22, and progression of disease (Cycle = 42 days)
Will evaluate the impact of combination treatment on peripheral immune cells. Will include myeloid cell (polarization), T-cells (T-cell receptor [TCR] clonality), interferon, immunosuppression and cell cycle (RNAseq, gene set variation analysis [GSVA]). After correction for batch effect, GSVA scores for each gene set described will be calculated for each patient. Will assess changes within each patient over time from baseline with a parametric (such as t-test) or non-parametric (such as Wilcoxon signed rank) test depending on whether the data is normally distributed (paired within patients) at a significance level (alpha) of 0.05. Will also examine immune cell types bioinformatic deconvolution of the RNAseq data to estimate cell type frequencies. A percentage of TCR overlap of peripheral blood will be calculated and changes over time from baseline will be assessed with a parametric or non-parametric test at a significance level (alpha) of 0.05.
Time frame: At C1D1, C1D8, C1D22, C2D1, C2D22, C3D1, C3D22, and progression of disease (Cycle = 42 days)
Will evaluate the impact of combination treatment on peripheral immune cells. Myeloid cell clusters, changes in unique TCR clone frequencies (and their associated phenotypes), and DNA damage and repair pathways (inclusive of cell cycle and apoptosis) will be followed through treatment and changes within each patient over time from baseline to each blood draw with a parametric (such as t-test) or non-parametric (such as Wilcoxon signed rank) test depending on whether the data is normally distributed (paired within patients) at a significance level (alpha) of 0.05. Bulb RNAseq data will be utilized to help prioritize samples to commit to scRNAseq.
Time frame: At C1D1, C1D8, C1D22, C2D1, C2D22, C3D1, C3D22, and progression of disease (Cycle = 42 days)
Will evaluate the impact of combination treatment on peripheral immune cells. Myeloid cell phenotypes and markers of T-cell activation will be followed through treatment and changes within each patient over time from baseline to each blood draw with a parametric (such as t-test) or non-parametric (such as Wilcoxon signed rank) test depending on whether the data is normally distributed, (paired within patients) at a significance level (alpha) of 0.05.
Time frame: Up to 30 days after last dose of study drug
Will explore the correlations of absorbed doses of radiation to OARs and severe side effects. For time to each toxicity event separately, will summarize using the Kaplan-Meier method. AEs will be classified into acute or late events depending on the time from re-irradiation. Univariate logistic regression models will be used to study potential associations between independent variables and toxicity. Receive-operator characteristics analysis will be performed for OAR to study the correlation between events of severe toxicity and absorbed dose. Correlations between cumulated absorbed doses by healthy organs and the variation of laboratory parameters from baseline after each treatment cycle will be assessed with the Spearman correlation coefficient. Linear mixed models will be used to estimate the variations of laboratory measurements over time as a function of the cumulative absorbed doses by organs. Statistical significance will be considered at a significance level (alpha) of 0.05.
National Cancer Institute (NCI)
Nih
A Phase I Trial of 225Ac-anti-CD33 and PD1-Inhibitor in Recurrent Glioblastoma
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