Mayo Clinic in Rochester
Rochester, Minnesota, 55905, United States
NCT Number: NCT02068794
This phase I/II trial studies the side effects and best dose of oncolytic measles virus encoding thyroidal sodium iodide symporter (MV-NIS) infected mesenchymal stem cells and to see how well it works in treating patients with ovarian, primary peritoneal or fallopian tube cancer that has come back. Mesenchymal stem cells may be able to carry tumor-killing substances directly to ovarian, primary peritoneal and fallopian tube cancer cells.
This study is active but is not currently recruiting participants.
Notify Me18 year and older
All sexes
Interventional
Phase 1 / Phase 2
Rochester, Minnesota, 55905, United States
PRIMARY OBJECTIVES:
I. To determine the maximally tolerated dose (MTD) of intraperitoneal administration of an Edmonston's strain measles virus genetically engineered to produce sodium iodine symporter (NIS) (measles virus [MV]-NIS) in patients with recurrent ovarian cancer, delivered by adipose tissue derived mesenchymal stem cells (MSC). (Phase I) II. To assess the 12 month overall survival of patients treated with this regimen. (Phase II)
SECONDARY OBJECTIVES:
I. To assess the tolerability of this regimen. (Phase II) II. To assess the 4 month progression free survival of patients treated with this regimen. (Phase II) III. To assess the response rate, progression-free survival, and overall survival of patients treated with this regimen. (Phase II)
TRANSLATIONAL OBJECTIVES:
I. To assess the time course of viral gene expression and virus elimination and biodistribution of virally infected cells at various time points after infection with MV-NIS versus MSC delivered MV-NIS using single-photon emission computed tomography (SPECT)/computed tomography (CT) imaging. (Phase II) II. To assess viremia, viral replication, and measles virus shedding/persistence following intraperitoneal administration. (Phase II) III. To assess humoral and cellular immune response to the injected virus. (Phase II) IV. To assess in a preliminary fashion the development of antitumor immune response. (Phase II)
OUTLINE: This is a phase I, dose-escalation study followed by phase II study.
Patients receive oncolytic measles virus encoding thyroidal sodium iodide symporter intraperitoneally (IP) over 30 minutes on day 1 of cycle 1 and MV-NIS infected mesenchymal stem cells (MSC) (if MSC are not available, MV-NIS may be given alone) IP over 30 minutes of subsequent cycles. Treatment repeats every 28 days for up to 6 cycles in the absence of disease progression or unacceptable toxicity. Additionally, patients undergo echocardiography (ECHO) or multigated acquisition scan (MUGA) prior to registration and blood sample collection, chest X-ray, SPECT/CT, CT or magnetic resonance imaging (MRI) throughout the study.
After completion of study treatment, patients are followed up every 6 months for up to 5 years.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Correlative studies
Given IP
Given IP
Other names: MV-NIS
Undergo ECHO
Other names: Echocardiograph (EC), echocardiograph, ECHO
Undergo MUGA
Other names: Blood Pool Scan, Equilibrium Radionuclide Angiography, Gated Blood Pool Imaging, Gated Heart Pool Scan, MUGA, MUGA Scan, Multi-Gated Acquisition Scan, Radionuclide Ventriculogram Scan, Radionuclide ventriculography, Radionuclide Ventriculography (RNVG), RNVG, SYMA Scanning, Synchronized Multigated Acquisition Scanning
Undergo blood sample collection
Other names: Biological Sample Collection, Biospecimen Collected, Blood Sample Collection, Specimen Collection
Undergo chest X-ray
Other names: chest x-ray
Undergo SPECT/CT
Other names: SPECT/CT, SPECT/CT SCAN
Undergo CT
Other names: CAT, CAT Scan, Computed Axial Tomography (CAT), computerized axial tomography, Computerized axial tomography (procedure), Computerized Tomography, CT, CT SCAN, tomography
Undergo MRI
Other names: Magnetic Resonance, Magnetic Resonance Imaging (MRI), Magnetic resonance imaging (procedure)Q, Magnetic Resonance Imaging Scan, Medical Imaging, Magnetic Resonance / Nuclear Magnetic Resonance, MR, MR Imaging, MRI Scan, MRIs, NMRI, nuclear magnetic resonance imaging, sMRI, Structural MRI
Time frame: 28 days
Maximum tolerated dose will be defined as the dose level below the lowest dose that induces dose-limiting toxicity (DLT) in at least one-third of patients (at least 2 of a maximum of 6 new patients).
Time frame: 12 months
The proportion of patients that were followed and alive at 12 months post registration.
Time frame: 5 years
A confirmed tumor response is defined to be a CR or PR noted as the objective status on 2 consecutive evaluations at least 4 weeks apart. All patients meeting the eligibility criteria who have signed a consent form and have begun treatment will be evaluable for response. CR(complete response) is determined by the disappearance of all target lesions and normalization of CA125 if elevated at baseline. PR(partial response) is determined by at least 30% decrease in the sum of the longest diameter (LD) of target lesion taking as reference the baseline sum LD.
Time frame: 4 months
Defined as the proportion of patients alive and progression free at 4 months.
Time frame: Up to 5 years
Defined as the length of time from study registration to date of death due to any cause. The distribution of survival time will be estimated using Kaplan-Meier survival curves and logrank tests.
Time frame: Up to 5 years
Progression-free survival (PFS) is defined as the length of time from study registration to the first of either death due to any cause or progression. The distribution of PFS will be estimated using Kaplan-Meier survival curves and logrank tests. In addition, comparisons of overall PFS in patients treated with MV-NIS/MSC will be made to patients enrolled on the prior MV-CEA and MV-NIS trial in an exploratory manner.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Time frame: Up to 5 years
Descriptive statistics and simple scatterplots will form the basis of presentation of these data. Correlations between these laboratory values and other outcome measures will be carried out using Spearman's coefficients, chi squared tests, Wilcoxon rank-sum tests, Kaplan-Meier curves, and Cox proportional hazards models, where appropriate.
Mayo Clinic
Other
Phase I/II Trial of Intraperitoneal Administration of Adipose Tissue Derived Mesenchymal Stem Cells Infected With a NIS-Expressing Derivative Manufactured From a Genetically Engineered Strain of Measles Virus in Patients With Recurrent Ovarian Cancer
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