The main goal of the research study is to determine whether treating renal cell cancer patients with the study drug, hydroxychloroquine, along with IL-2, a standard treatment of kidney cancer that has spread to other parts of the body, can make the cancer easier to kill and eliminate. Another goal is to see how the study drug affects the body's immune cells which fight cancer cells.
The rationale for combining the high dose bolus aldesleukin with hydroxychloroquine includes potential positive interactions on the immune regulatory side, non-overlapping toxicities, and potential for prolongation and increased number of responses based on murine studies conducted at the University of Pittsburgh. This study is a multi-center phase II study designed to estimate the efficacy of combination therapy of standard high dose bolus IL-2 and various doses of hydroxychloroquine therapy in metastatic RCC patients.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
30
Continuous oral administration (at 600 mg/d) will be initiated prior to the first dose (day -14) given 14 days prior to initiation of the first dose of IL-2 and then daily or twice a day throughout all three treatment courses.
600,000 IU/kg IV bolus q 8 hrs x days 1-5 and 15-19 (maximum 28 doses - 14 per 5 day cycle) of each 84-day course
Loyola University Chicago
Maywood, Illinois, United States
Indiana University Simon Cancer Center
Indianapolis, Indiana, United States
Dana Farber Cancer Institute
Boston, Massachusetts, United States
Dartmouth-Hitchcock Medical Center
Hanover, New Hampshire, United States
Clinical Response - IL-2 Combined With Hydroxychloroquine (HCQ) at Either 1,200 mg/d or 600 mg/d) (All Patients)
Clinical Response: per RECIST v1.1: Complete Response (CR): Disappearance of all target lesions. Any pathological lymph nodes (target or non-target) with reduction in short axis to \<10 mm. Partial Response (PR): ≥30% decrease in the sum of diameters of target lesions, taking as reference the baseline sum diameters. Stable Disease (SD): Neither sufficient shrinkage to qualify for PR nor sufficient increase to qualify for PD, taking as reference the smallest sum diameters while on study. Progressive Disease (PD):≥20% increase in the sum of diameters of target lesions, taking as reference the smallest sum on study (this includes the baseline sum if that is the smallest on study). The sum must also demonstrate an absolute increase of ≥5 mm. The appearance ≥1 new lesion(s) is considered progression.
Time frame: Up to 3 years
Clinical Response - IL-2 Combined With Hydroxychloroquine (HCQ) at 1,200 mg/d
Clinical Response: per RECIST v1.1: Complete Response (CR): Disappearance of all target lesions. Any pathological lymph nodes (target or non-target) with reduction in short axis to \<10 mm. Partial Response (PR): ≥30% decrease in the sum of diameters of target lesions, taking as reference the baseline sum diameters. Stable Disease (SD): Neither sufficient shrinkage to qualify for PR nor sufficient increase to qualify for PD, taking as reference the smallest sum diameters while on study. Progressive Disease (PD):≥20% increase in the sum of diameters of target lesions, taking as reference the smallest sum on study (this includes the baseline sum if that is the smallest on study). The sum must also demonstrate an absolute increase of ≥5 mm. The appearance ≥1 new lesion(s) is considered progression.
Time frame: Up to 3 years
Clinical Response - IL-2 Combined With Hydroxychloroquine (HCQ) at 600 mg/d
Clinical Response: per RECIST v1.1: Complete Response (CR): Disappearance of all target lesions. Any pathological lymph nodes (target or non-target) with reduction in short axis to \<10 mm. Partial Response (PR): ≥30% decrease in the sum of diameters of target lesions, taking as reference the baseline sum diameters. Stable Disease (SD): Neither sufficient shrinkage to qualify for PR nor sufficient increase to qualify for PD, taking as reference the smallest sum diameters while on study. Progressive Disease (PD):≥20% increase in the sum of diameters of target lesions, taking as reference the smallest sum on study (this includes the baseline sum if that is the smallest on study). The sum must also demonstrate an absolute increase of ≥5 mm. The appearance ≥1 new lesion(s) is considered progression.
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The Ohio State University Comprehensive Cancer Center
Columbus, Ohio, United States
Providence Health & Services
Portland, Oregon, United States
University of Pittsburgh Cancer Institute / UPMC CancerCenter
Pittsburgh, Pennsylvania, United States
Time frame: Up to 3 years
Overall Survival (OS)
Time from date of first protocol treatment until the date of death, or censored at date of last contact.
Time frame: Up to 3 years
Progression-free Survival (PFS)
Time from the date of first protocol treatment until the date disease progression criteria are met (in responding patients progression criteria uses the reference of the smallest measurements recorded since the treatment started) or is censored at date of last disease assessment for those who have not progressed. Per RECIST 1.1, Progressive Disease (PD) is defined as ≥20% increase in the sum of diameters of target lesions, taking as reference the smallest sum on study (this includes the baseline sum if that is the smallest on study). The sum must also demonstrate an absolute increase of ≥5 mm. The appearance ≥1 new lesion(s) is considered progression.
Time frame: Up to 3 years
Number of Doses of IL-2 + HCQ
Number of doses of IL-2 administered during the first course of therapy.
Time frame: Up to 3 years
Frequency of Grade III and Grade IV Toxicities
Number of specified categories of grade III and IV or unexpected or rare toxicities occurring during the first course (up until the end of cycle 1) of IL-2 treatment.
Time frame: Up to 3 years
Worst Grade of Adverse Event Experienced
Number of participants who experienced Grade 2-5 adverse events.
Time frame: Up to 3 years
Worst Grade of Adverse Event At Least Possibly Related to Treatment Experienced
Number of participants who experienced Grade 2-5 adverse events that were at least possibly related to study treatment.
Time frame: Up to 3 years
Worst Grade of Adverse Event At Least Probably Related to Treatment Experienced
Number of participants who experienced Grade 2-5 adverse events that were at least probably related to study treatment.
Time frame: Up to 3 years
Serum Lactate Dehydrogenase
Number of participants with either high serum lactate dehydrogenase (\> 1.5 times upper limit of normal) or normal lactate dehydrogenase.
Time frame: Up to 2 years
Hemoglobin Levels
Low hemoglobin levels (less than the lower limit of normal (13.2 g/dL)) are considered to be unfavorable.
Time frame: Up to 3 years
Serum Calcium Levels (Corrected)
Number of patients with either normal or high serum calcium levels. High serum calcium levels are considered to be clinically unfavorable.
Time frame: Up to 3 years
Prior Nephrectomy
Number of patients with history of a prior nephrectomy (surgical removal of a kidney) or no history of a prior nephrectomy.
Time frame: Up to 3 years
Number of Participants With Low Karnofsky Performance Status
Karnofsky performance status is a standard way of measuring the ability of cancer patients to perform ordinary tasks. The Karnofsky Performance Status scores range from 0 to 100. A higher score means the patient is better able to carry out daily activities. Karnofsky Performance Status may be used to determine a patient's prognosis, to measure changes in a patient's ability to function, or to decide if a patient should be included in the trial. A low Karnofsky performance status (\<80%) is considered to be unfavorable.
Time frame: Up to 3 years
Natural Killer (NK) Cells
Percentage of Natural Killer (NK) cells per ml of blood. NK cells are lymphocytes with the ability to kill tumor cells without deliberate immunization or activation.
Time frame: Up to 3 years
Myeloid Derived Suppressor Cell (MDSC)
Percentage of Myeloid Derived Suppressor Cell per ml of blood. MDSC immune cells originate from bone marrow stem cells and strongly expand in cancer.
Time frame: Up to 3 years
Regulatory T Cells (Treg)
Percentage of Regulatory T cells per ml of blood. High levels of Tregs in the tumor microenvironment are associated with poor prognosis in many cancers by suppressing the body's anti-tumor immune response.
Time frame: Up to 3 years
Plasmacytoid Dendritic Cells (pDC)
Percentage of Plasmacytoid dendritic cells per ml of blood. In cancer, pDC are malignant immune cells that demonstrate an impaired response that can contribute to the establishment of an immunosuppressive tumor microenvironment.
Time frame: Up to 3 years
T-cell Lymphocytes
Percentage of T-cell lymphocytes in blood as cells per ml. T-cells are a subtype of white blood cells which play a key role in the immune system and fighting cancer.
Time frame: Up to 3 years
Conventional Dendritic Cells (cDC)
Percentage of Conventional Dendritic Cells (cDC) per ml of blood. cDC reside in tissues and once activated, migrate to draining lymph nodes to promote adaptive immune responses.
Time frame: Up to 3 years