Ohio State University Comprehensive Cancer Center
Columbus, Ohio, 43210, United States
NCT Number: NCT01351896
This phase II trial studies the effect of lenalidomide and vaccine in treating patients with early-stage asymptomatic chronic lymphocytic leukemia or small lymphocytic lymphoma. Lenalidomide may stop the growth of cancer cells by blocking blood flow to the cancer. It may also stimulate the immune system in different ways and stop cancer cells from growing. Vaccines may help the body build an effective immune response to kill cancer cells. Giving lenalidomide together with vaccine therapy may make a stronger immune response and kill more cancer cells.
This study is active but is not currently recruiting participants.
Notify Me18 year–79 year
All sexes
Interventional
Phase 2
Columbus, Ohio, 43210, United States
PRIMARY OBJECTIVE:
I. To determine the proportion of early-stage, high-risk chronic lymphocytic leukemia (CLL) patients achieving a response (>= 4-fold increase from baseline and/or antibody concentrations >= 0.35 ug/mL in 6 of 7 type-specific anti-pneumococcal antibody levels) after 2 doses of pneumococcal 13-valent conjugated vaccine (Prevnar 13, PCV13 [pneumococcal polyvalent vaccine]) administered concurrent with versus sequential to low-dose lenalidomide.
SECONDARY OBJECTIVES:
I. To determine the complete response (CR) rate after 2 years of lenalidomide therapy.
II. To determine the time to first treatment (TFT), defined as the time from diagnosis to first non-lenalidomide therapy for progressive CLL as described by International Workshop on Chronic Lymphocytic Leukemia (IWCLL) 2008 criteria.
III. To determine the incidence of infection and invasive pneumococcal infections following treatment with the PCV13 vaccine and either concurrent or sequential lenalidomide.
IV. To determine the frequency of humoral and cellular immune response to CLL tumor antigens following treatment with the PCV13 vaccine and either concurrent or sequential lenalidomide.
V. To determine the safety and toxicity associated with long-term lenalidomide exposure.
VI. To perform correlative pharmacodynamic and pharmacokinetic studies and correlate these with vaccine/tumor immunologic and disease response.
OUTLINE: Patients are randomized to 1 of 2 treatment arms.
ARM A (concurrent PCV13 and lenalidomide): Patients receive low-dose lenalidomide orally (PO) once daily on days 1-28. Treatment repeats every 28 days for at least 24 cycles in the absence of disease progression or unacceptable toxicity. Patients also receive 13-valent protein-conjugated pneumococcal vaccine (PCV13) intramuscularly (IM) on day 1 of courses 3 and 5.
ARM B (sequential PCV13 and lenalidomide): Patients receive PCV13 IM on days 1 and 78 (cycles 1 and 3). Patients also receive low-dose lenalidomide as in arm 1 beginning on day 1 of cycle 4. Treatment repeats every 28 days for at least 24 cycles in the absence of disease progression or unacceptable toxicity.
Patients may undergo bone marrow biopsy and aspirate and computed tomography (CT) during screening and blood sample collection throughout the study. (Blood sample collection discontinued with approval of protocol version 24 dated 3/15/2024)
After completion of study treatment, patients are followed up for 30 days, every 3 months for 1 year, and then every 6 months thereafter.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Undergo blood sample collection
Other names: Biological Sample Collection, Biospecimen Collected, Sample Collection, Specimen Collection
Undergo bone marrow aspiration
Undergo bone marrow biopsy
Other names: Biopsy of Bone Marrow, Biopsy, Bone Marrow
Undergo 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
Given PO
Other names: CC 5013, CC-5013, CC5013, CDC 501, Revlimid
Given IM (concurrently or sequentially)
Other names: PCV 23, Pneumococcal 23-valent Polysaccharide Vaccine, Pneumococcal Polysaccharide Vaccine, Pneumococcal Vaccine Polyvalent, Pneumovax 23, Pnu-Imune 23, PPSV, PPSV23, PPSV23 Vaccine
Time frame: Up to 1 month
Defined as achieving at least a four-fold increase in post-vaccination serotype-specific immunoglobulin G (IgG) titers or serotype-specific IgG concentrations of >= 0.35 ug/mL for 6 of 7 serotypes measured by a standard enzyme linked immunosorbent assay.
Time frame: Up to 4 years
Summarized using descriptive statistics by treatment arm.
Time frame: At 2 years
95% confidence intervals will be estimated. A designation of complete response (CR) requires all of the following for a period of at least two months from completion of therapy:
Time frame: From study entry to first therapy for progressive CLL, assessed up to 4 years
Defined by International Workshop on chronic lymphocytic leukemia (CLL) (IWCLL) 2008 criteria. Summarized and explored between treatment arms using Kaplan-Meier methods. Reported as the probability of not starting the next treatment and its 95% CI for each year.
Time frame: Up to 4 years
Summarized and explored between treatment arms using Kaplan-Meier methods.
Time frame: Time from start of treatment to time of disease progression or death secondary to any cause, assessed up to 2 years
Defined by International Workshop on chronic lymphocytic leukemia (CLL) (IWCLL) 2008 criteria. Summarized and explored between treatment arms using Kaplan-Meier methods.
Time frame: Up to 4 years
Summarized by and across treatment arms, along with the type, severity, and perceived attribution to study according to National Cancer Institute (NCI) Common Terminology Criteria for Adverse Events (CTCAE) version 5. The rates of severe (grade 3+) toxicity (at least possibly related to treatment) and non-hematologic toxicity will be summarized; assuming the incidence of severe toxicity is binomially distributed, 95% confidence intervals will be calculated. The maximum grade for each type of toxicity will be recorded for each patient, and frequency tables will be reviewed to determine the toxicity patterns. Adverse events occurring in greater than 5% of the participants in each arm will be reported in this outcome measure.
Time frame: Baseline, days 1 and 2 of course 2 (Arm A) and days 1 and 2 of course 5 (Arm B)
PK will be graphically evaluated within and across arms to assess potential patterns and relationships.
Time frame: Baseline up to 4 years
Pharmacodynamic markers will be graphically evaluated within and across arms to assess potential patterns and relationships.
Time frame: Baseline up to 4 years
Pharmacodynamic markers will be graphically evaluated within and across arms to assess potential patterns and relationships.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
Time frame: Up to cycle 10 day 1 (each cycle is 28 days)
Summarized using descriptive statistics by treatment arm. Changes in serotype-specific markers will be graphically evaluated between the two arms and the nonparametric Mann-Whitney rank sum test will be used to compare the geometric mean concentrations.
National Cancer Institute (NCI)
Nih
Phase II Study of Lenalidomide to Repair Immune Synapse Response and Humoral Immunity in Early-Stage, Asymptomatic Chronic Lymphocytic Leukemia/Small Lymphocytic Lymphoma (CLL/SLL) With High-Risk Genomic Features
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
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.
Published trials that share one or more normalized conditions with this study.
NCT01024010
Chronic Disease, Chronic Lymphocytic Leukemia
Scottsdale, Arizona, United States
View Trial DetailsNCT01199562
Accelerated Phase Chronic Myelogenous Leukemia, Acute Undifferentiated Leukemia
Duarte, California, United States
View Trial DetailsNCT02213913
Adult Grade III Lymphomatoid Granulomatosis, B-cell Chronic Lymphocytic Leukemia
Chicago, Illinois, United States
View Trial DetailsNCT02100423
Chronic Disease, Contiguous Stage II Small Lymphocytic Lymphoma
Cleveland, Ohio, United States
View Trial Details