The goal of this Phase 1 clinical trial is to learn whether all-trans retinoic acid (ATRA) combined with tislelizumab is safe and tolerable in adults with EGFR-mutant non-small cell lung cancer (NSCLC). The study is for people whose cancer has worsened after treatment with a third-generation EGFR tyrosine kinase inhibitor and at least one standard systemic treatment, or who cannot tolerate or are not suitable for currently available standard treatments. The main questions this study aims to answer are: * What side effects and dose-limiting toxicities occur with the combination of ATRA and tislelizumab? * What is the highest dose of ATRA that can be given safely with tislelizumab, and what dose should be recommended for future studies? Researchers will also look for early signs that the combination can shrink or control the cancer and will assess how long participants live without their cancer getting worse and how long they live overall. Tumor tissue and blood samples will be studied to explore changes in the cancer and the immune system and to identify possible markers associated with treatment response or side effects. All participants will receive ATRA and tislelizumab; there is no comparison or placebo group. Participants will: * Take ATRA by mouth twice daily, beginning 7 days before the first dose of tislelizumab. The ATRA dose will be assigned according to the dose level being studied. * Receive tislelizumab by intravenous infusion once every 3 weeks. * Undergo regular safety assessments, including physical examinations, blood tests, vital-sign measurements, and monitoring for side effects. * Undergo imaging examinations approximately every 6 weeks during the first year to assess the cancer. * Provide tumor tissue and blood samples for biomarker research. * Attend an end-of-treatment visit, safety follow-up visits, and survival follow-up approximately every 3 months after treatment ends.
This is a prospective, single-arm, open-label, Phase 1 dose-escalation and dose-expansion clinical trial evaluating all-trans retinoic acid (ATRA) in combination with tislelizumab in participants with advanced EGFR-mutant non-small cell lung cancer (NSCLC). The study population will include participants whose disease has progressed after a third-generation EGFR tyrosine kinase inhibitor (EGFR-TKI) and at least one standard systemic therapy, as well as participants who are unable to tolerate or are considered unsuitable for currently available standard treatment. Participants must have no clearly available and appropriate standard targeted therapy, as determined by the investigator. The study is designed to characterize the safety and tolerability of the combination, identify the maximum tolerated dose (MTD) and/or recommended Phase 2 dose (RP2D), and obtain preliminary evidence of antitumor activity. The study will also explore molecular and immune changes associated with treatment response and toxicity. Dose Escalation and Dose Expansion A conventional 3+3 dose-escalation design will be used. Three ATRA dose levels are planned: * Dose Level 1: ATRA 30 mg orally twice daily * Dose Level 2: ATRA 40 mg orally twice daily * Dose Level 3: ATRA 50 mg orally twice daily At each dose level, ATRA will be administered in combination with tislelizumab 200 mg by intravenous infusion once every 3 weeks. Initially, 3 participants will be enrolled at each dose level. Enrollment may be expanded to 6 participants at a dose level according to the occurrence of dose-limiting toxicities (DLTs) and the prespecified 3+3 dose-escalation rules. After the RP2D has been selected, approximately 6 additional participants are planned to be enrolled in a dose-expansion cohort at that dose level. The expansion cohort will provide additional information on the safety, tolerability, and preliminary antitumor activity of the combination. Approximately 15 to 24 participants are expected to be enrolled. The final sample size will depend on the number of DLTs observed and the outcome of dose escalation. Treatment Plan and DLT Evaluation Treatment will be administered in 21-day cycles. ATRA will be started 7 days before the first tislelizumab infusion. During this 7-day lead-in period, participants will receive ATRA alone. Beginning on Cycle 1 Day 1, participants will continue oral ATRA and receive tislelizumab 200 mg intravenously every 3 weeks. The DLT evaluation period will consist of the 7-day ATRA lead-in period plus the first 21-day combination-treatment cycle, for a total of 28 days. Participants who complete the required DLT observation period, or who experience a DLT during that period, will be considered evaluable for DLT assessment. Treatment may continue according to the protocol until disease progression, unacceptable toxicity, withdrawal of consent, pregnancy, loss to follow-up, initiation of another anticancer treatment, investigator determination that continued treatment is no longer in the participant's best interest, or termination of the study. If an adverse event considered related to ATRA occurs, supportive treatment, temporary interruption, dose reduction, or permanent discontinuation of ATRA may be used according to the type, severity, duration, and recovery of the toxicity. Dose reduction of tislelizumab is not permitted. Tislelizumab may be interrupted, resumed, or permanently discontinued for immune-related or other clinically significant adverse events in accordance with applicable prescribing information, established toxicity-management guidance, and the investigator's clinical judgment. Study Assessments The study includes a screening period, a 7-day ATRA lead-in period, the combination-treatment period, an end-of-treatment visit, safety follow-up, and survival follow-up. Screening assessments will generally be completed within 28 days before the first study treatment. Assessments will include medical and treatment history, physical examination, vital signs, performance status, concomitant medications, laboratory testing, electrocardiography, baseline tumor imaging, and collection of biological samples. Safety and treatment suitability will be evaluated before treatment in each 21-day cycle. Assessments will include physical examination, vital signs, body weight, performance status, hematology and blood chemistry testing, lipid testing, concomitant medication review, adverse-event monitoring, and evaluation of adherence to oral ATRA treatment. During the first year of treatment, tumor imaging will generally be performed every 6 weeks, with an allowed window of 7 days. After the first year, imaging may be performed every 9 weeks, with an allowed window of 7 days. Tumor response and disease progression will be assessed according to Response Evaluation Criteria in Solid Tumors, version 1.1 (RECIST v1.1). Participants who discontinue all study treatment should complete an end-of-treatment visit within 28 days after the last study treatment, with an allowed window of 7 days, or before starting a new anticancer treatment, whichever occurs first. Adverse events, serious adverse events, and clinically significant laboratory abnormalities that have not resolved at treatment discontinuation will be followed until they return to baseline, improve to Grade 1 or lower, stabilize at a level considered acceptable by the investigator, are determined to be irreversible, or the participant begins a new anticancer treatment. After completion of safety follow-up, survival status and information about subsequent anticancer treatment will be collected approximately every 3 months, with an allowed window of 7 days, until death, loss to follow-up, withdrawal of consent, or study termination. Translational and Biomarker Research Tumor tissue will be collected at baseline and, when specified by the protocol, at disease progression. Peripheral blood will be collected at baseline and at planned time points during treatment. These samples will be used to characterize tumor-associated molecular features and their changes over time. Single-cell analyses may be used to evaluate the molecular characteristics and longitudinal changes of immune-cell populations in peripheral blood mononuclear cells, including T cells and monocyte/myeloid-cell populations. These exploratory analyses are intended to identify potential biomarkers associated with antitumor activity or treatment-related toxicity and to generate hypotheses regarding possible predictors of treatment response. Statistical Considerations No formal statistical hypothesis testing is planned for this Phase 1 dose-finding study. Analyses will primarily be descriptive. Safety findings and DLTs will be summarized overall and by dose level. Selection of the MTD and/or RP2D will be based on the prespecified 3+3 dose-escalation rules together with the overall available safety, tolerability, and clinical data. Preliminary antitumor activity will be summarized descriptively. Time-to-event measures may be explored using the Kaplan-Meier method if the available data are sufficiently mature. Biomarker analyses will be exploratory and will be conducted in participants with suitable tumor tissue or peripheral blood samples and the corresponding clinical data.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
24
All-trans retinoic acid will be administered orally twice daily at an assigned dose level of 30 mg, 40 mg, or 50 mg. ATRA will begin 7 days before the first tislelizumab infusion and will continue during the subsequent 21-day combination-treatment cycles. Dose escalation will follow a conventional 3+3 design. After the recommended dose for further study has been determined, additional participants will receive ATRA at that dose in the dose-expansion cohort. ATRA may be interrupted, reduced, or permanently discontinued according to the type, severity, duration, and recovery of treatment-related toxicity.
Tislelizumab, a programmed cell death protein 1 (PD-1) inhibitor, will be administered at a dose of 200 mg by intravenous infusion once every 3 weeks. The first dose will be administered after the 7-day ATRA lead-in period, and tislelizumab will then be given in combination with oral ATRA during each 21-day treatment cycle. Dose reduction of tislelizumab is not permitted. Treatment may be interrupted, resumed, or permanently discontinued for immune-related or other clinically significant adverse events according to applicable prescribing information, established toxicity-management guidance, and the investigator's clinical judgment.
National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital
Beijing, Beijing Municipality, China
Incidence and Severity of Adverse Events
The number and percentage of participants who experience adverse events, serious adverse events, and treatment-related adverse events will be summarized overall and by dose level. Safety will also be evaluated using clinically significant changes in laboratory test results, vital signs, physical examinations, and other safety assessments.
Time frame: From the first dose of ATRA through the safety follow-up visit, approximately 28 days after the last dose of study treatment
Incidence of Dose-Limiting Toxicities
The number and percentage of DLT-evaluable participants who experience a dose-limiting toxicity (DLT) will be summarized by ATRA dose level. DLTs will be assessed according to the protocol-defined criteria during the 28-day DLT evaluation period.
Time frame: From the start of the 7-day ATRA lead-in period through the end of the first 21-day combination-treatment cycle, a total of 28 days
Maximum Tolerated Dose and/or Recommended Dose for Further Study
The maximum tolerated dose (MTD) and/or recommended dose for further study will be determined using the prespecified 3+3 dose-escalation rules. The determination will be based primarily on the occurrence of DLTs at each ATRA dose level, together with the overall available safety and tolerability data for ATRA in combination with tislelizumab.
Time frame: At completion of dose escalation, based primarily on DLTs observed during each participant's 28-day DLT evaluation period
Objective Response Rate
Objective response rate (ORR) is defined as the percentage of participants whose best overall response is a confirmed complete response (CR) or partial response (PR), as assessed by the investigator according to Response Evaluation Criteria in Solid Tumors, version 1.1 (RECIST v1.1).
Time frame: From the first dose of study treatment until disease progression, initiation of a new anticancer treatment, death, withdrawal of consent, loss to follow-up, or study completion, whichever occurs first, assessed for up to approximately 24 months
Disease Control Rate
Disease control rate (DCR) is defined as the percentage of participants whose best overall response is a complete response (CR), partial response (PR), or stable disease (SD), as assessed by the investigator according to RECIST v1.1.
Time frame: From the first dose of study treatment until disease progression, initiation of a new anticancer treatment, death, withdrawal of consent, loss to follow-up, or study completion, whichever occurs first, assessed for up to approximately 24 months
Progression-Free Survival
Progression-free survival (PFS) is defined as the time from the first dose of study treatment to the first documented disease progression according to RECIST v1.1 or death from any cause, whichever occurs first.
Time frame: From the first dose of study treatment until documented disease progression or death from any cause, whichever occurs first, assessed for up to approximately 24 months
Overall Survival
Overall survival (OS) is defined as the time from the first dose of study treatment to death from any cause.
Time frame: From the first dose of study treatment until death, withdrawal of consent, loss to follow-up, or study completion, assessed for up to approximately 24 months
Changes in Tumor Molecular Characteristics
Tumor tissue collected at baseline and, when available according to the protocol, at disease progression will be analyzed to characterize tumor-associated molecular features and their changes over time. Exploratory analyses may include genomic, transcriptomic, or other molecular characteristics, depending on sample availability and assay feasibility.
Time frame: At baseline and at documented disease progression, assessed for up to approximately 24 months
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