This is a Phase Ib/II, open-label, multi-center, competitive enrollment and dose-escalation study of ALT-801 combined with cisplatin. The purpose of this study is to evaluate the safety, determine the Maximum-Tolerated Dose (MTD), and characterize the pharmacokinetic profile of ALT-801 given with cisplatin in patients who are chemotherapy naïve and have metastatic melanoma that is considered surgically incurable. The anti-tumor responses of ALT-801 with cisplatin will also be assessed in this trial.
Most current cancer treatment strategies involve the use of chemotherapeutic or biological drugs that exhibit variable efficacy and considerable toxicity. The limitations are often the result of the adverse side effects of the therapeutic drug on normal tissues. One approach to control these effects is to target the therapy to the tumor site. Of the identified tumor antigens, the human p53 tumor suppressor protein is overexpressed in a wide range of human malignancies. p53 is an intracellular tumor suppressor protein that acts to arrest the proliferation of cells. When mutated, it loses its ability to suppress abnormal proliferation and exhibits a longer half-life than the wild-type protein, allowing for its accumulation in tumors. In addition, p53 overexpression correlates with tumor transformation and aggression and is associated with lower overall survival rates and resistance to chemotherapeutic intervention in cancer patients. Therefore, p53 appears to be a marker for a considerable number of human malignancies and represents a good target for immunotherapeutics. However, p53 cannot be used as a target for antibodies because it is not displayed independently on the cell surface. Instead, the p53 protein is processed intracellularly into peptide fragments that are then displayed on the cell surface in the context of MHC. These peptide/MHC complexes are recognized by T-cells via their T-cell receptors (TCRs). Recently it has been confirmed that a p53 peptide fragment is significantly elevated in a wide range of human tumor tissues, particularly in melanoma, renal, lung, breast, colorectal, and osteosarcoma cancers. As a result, the feasibility of using soluble TCRs to target therapies against tumor cells that overexpress p53 is being investigated. Interleukin-2 (IL-2) is a well-characterized growth factor for immune effector cells which play critical roles in tumor control and rejection. As a result, recombinant human IL-2 (e.g., Proleukin®, Chiron Novartis) has been approved for treatment of metastatic melanoma and renal cell carcinoma. IL-2 treatment provides significant benefit to a subset of patients with some maintaining durable responses for over ten years post-treatment. However, the major drawbacks of IL-2 therapy are its limited half-life and severe systemic toxicity. Hence, the use of high dose IL-2 is limited to specialized programs with experienced personnel, and it is generally offered to patients who are responsive and have excellent organ function. The low dose IL-2 treatment, while less toxic and more convenient, produces lower response rates and appears to be less effective in treating metastatic tumors. Thus, there is a critical need for innovative strategies that enhance the effects of IL-2 or reduce its toxicity without compromising clinical benefit. Targeted approaches to concentrate therapeutic cytokines, such as IL-2, at the tumor sites that express p53 could provide considerable advantages over current treatment. The study drug, ALT-801, is a biologic compound composed of interleukin-2 (IL-2) genetically fused to a humanized soluble T-cell receptor directed against the p53-derived peptides expressed on tumor cells. This study is to evaluate whether directing IL-2 activity using ALT-801 to the patient's tumor sites that overexpress p53 results in clinical benefits if the ALT-801 treatment is given with cisplatin. Platinum-based analogues including cisplatin, alone or in combination with other chemotherapies, have been shown to be active in patients with metastatic melanoma. Additionally, it is known that cisplatin, an alkylating agent known to inhibit DNA synthesis of dividing cells, triggers increased intracellular level of p53. The synergistic effects of cisplatin and ALT-801 treatment may induce cisplatin-mediated increases in p53 peptide display on the tumors and subsequently enhance tumor targeting of ALT-801.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
22
Participants receive cisplatin 70 mg/m\^2 on cycle 1 day 1 only.
Intravenous infusions; cycle 1: day 3 and 5; cycle 2: day 1, 3 and 5; nine day rest period between cycles; seven day recovery period between courses Stage 1: dose escalation (0.04 mg/kg, 0.06 mg/kg, 0.08 mg/kg, 0.10 mg/kg) Stage 2: dose expansion (dose at MTD)
The Angeles Clinic and Research Institute
Los Angeles, California, United States
MD Anderson Cancer Center Orlando
Orlando, Florida, United States
Emory University
Atlanta, Georgia, United States
Northwestern University
To Evaluate the Safety of ALT-801-cisplatin Regimen by the Number of Participants With AEs.
Safety was measured by the number of participants experiencing a treatment emergent adverse event \[AE\]
Time frame: Up to 12 months
To Assess the Objective Response (OR) Which Includes CR and PR
The objective response rate (ORR) was calculated as the ratio of the number of patients who demonstrated a confirmed response (complete response \[CR\] or partial response \[PR\]) divided by the number of patients evaluable for response based on Response Evaluation Criteria in Solid Tumors Criteria (RECIST) v1.1. Per RECIST v1.1, a Complete Response (CR) is disappearance of all target lesions; Partial Response (PR) is \>= 30% decrease in the sum of diameters of target lesions, taking as reference the baseline sum diameters; and Overall Response (OR) = CR + PR.
Time frame: 3 months
To Assess the Clinical Benefit (CB) of the ALT-801-Cisplatin Regimen Which Includes CR, PR and SD
The clinical benefit rate (CBR) was calculated as the ratio of the number of patients who demonstrated a response (confirmed CR, confirmed PR, or stable disease \[SD\] lasting ≥ 8 weeks) divided by the number of patients evaluable for response.
Time frame: 3 months
To Determine the MTD of the ALT-801-Cisplatin Regimen Determined by Number of Participants With DLTs
The MTD was determined based on a 3x3 design based on the number of participants with at least 1 Dose Limiting Toxicity (DLT) Adverse Event.
Time frame: 7 weeks
To Assess the Six-month and One-year Survival Rates.
Survival was analyzed using Kaplan-Meier (KM) methods. Overall survival (OS) was defined as the time from start of study treatment to the date of death (any cause). Participants who were alive at the end of follow-up will be censored in the OS analysis at the last known date alive. The 6-month and 1-year survival probability rates were estimated from the KM analysis.
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Chicago, Illinois, United States
University of Iowa Hospitals and Clinics
Iowa City, Iowa, United States
Carolinas Medical Center-Brumenthal Cancer Center
Charlotte, North Carolina, United States
St. Luke's Hospital and Health Network
Bethlehem, Pennsylvania, United States
University of Washington, Seattle Cancer Care Center
Seattle, Washington, United States
Time frame: 12 months
Phase 2 Only: To Evaluate the Immunogenicity and Pharmacokinetic Profile of ALT-801
Blood samples for pharmacokinetic (PK) analysis of ALT-801 were to be taken on the first dose of ALT-801 of each course of study treatment. On each sampling day, venous blood was to be obtained at Time 0 (before the start of infusion), at 30 min (15 min after completion of drug infusion), and 1 hr, 3 hr, and 6 hr from Time 0 for the assessment of ALT-801 serum concentration. Non-compartmental and compartmental analyses were to be conducted. Serum levels of IFNγ and TNFα were also to be evaluated using the same blood samples and at the same schedule as PK analysis. The cell-mediated immune responses were to be evaluated once each treatment cycle in the predosing blood samples of the first ALT-801 infusion.
Time frame: 2 months