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Published on: September 18, 2013
Early drug development in solid tumours: analysis of National Cancer Institute-sponsored phase 1 trials
Dai Chihara1, Ruitao Lin2, Christopher R Flowers3
1Department of Lymphoma and Myeloma, The University of Texas MD Anderson Cancer Center, Houston, TX, USA; Medical Oncology Service, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Background:
The low expectation of clinical benefit from phase 1 cancer therapeutics trials might negatively affect patient and physician participation, study reimbursement, and slow the progress of oncology research. Advances in cancer drug development, meanwhile, might have favourably improved treatment responses; however, little comprehensive data exist describing the response and toxicity associated with phase 1 trials across solid tumours. The aim of the study is to evaluate the trend of toxicity and response in phase 1 trials for solid tumours over time.
Methods:
We analysed patient-level data from the Cancer Therapy Evaluation Program of the National Cancer Institute-sponsored investigator-initiated phase 1 trials for solid tumours, from Jan 1, 2000, to May 31, 2019. We assessed risks of treatment-related death (grade 5 toxicity ratings possibly, probably, or definitely attributable to treatment), all on-treatment deaths (deaths during protocol treatment regardless of attribution), grade 3-4 toxicity, and proportion of overall response (complete response and partial response) and complete response rate in the study periods of 2000-05, 2006-12, and 2013-2019, and evaluated their trends over time. We also analysed cancer type-specific and investigational agent-specific response, and analysed the trend of response in each cancer type over time. Univariate associations of overall response rates with patients' baseline characteristics (age, sex, performance status, BMI, albumin concentration, and haemoglobin concentration), enrolment period, investigational agents, and trial design were assessed using risk ratio based on the modified Poisson regression model.
Findings:
We analysed 465 protocols that enrolled 13 847 patients using 261 agents. 144 (31%) trials used a monotherapy and 321 (69%) used combination therapies. The overall treatment-related death rate was 0·7% (95% CI 0·5-0·8) across all periods. Risks of treatment-related deaths did not change over time (p=0·52). All on-treatment death risk during the study period was 8·0% (95% CI 7·6-8·5). The most common grade 3-4 adverse events were haematological; grade 3-4 neutropenia occurred in 2336 (16·9%) of 13 847 patients, lymphopenia in 1230 (8·9%), anaemia in 894 (6·5%), and thrombocytopenia in 979 (7·1%). The overall response rate for all trials during the study period was 12·2% (95% CI 11·5-12·8; 1133 of 9325 patients) and complete response rate was 2·7% (2·4-3·0; 249 of 9325). Overall response increased from 9·6% (95% CI 8·7-10·6) in 2000-05 to 18·0% (15·7-20·5) in 2013-19, and complete response rates from 2·5% (2·0-3·0) to 4·3% (3·2-5·7). Overall response rates for combination therapy were substantially higher than for monotherapy (15·8% [15·0-16·8] vs 3·5% [2·8-4·2]). The overall response by class of agents differed across diseases. Anti-angiogenesis agents were associated with higher overall response rate for bladder, colon, kidney and ovarian cancer. DNA repair inhibitors were associated with higher overall response rate in ovarian and pancreatic cancer. The rates of overall response over time differed markedly by disease; there were notable improvements in bladder, breast, and kidney cancer and melanoma, but no change in the low response of pancreatic and colon cancer.
Interpretation:
During the past 20 years, the response rate in phase 1 trials nearly doubled without an increase in the treatment-related death rate. However, there is significant heterogeneity in overall response by various factors such as cancer type, investigational agent, and trial design. Therefore, informed decision making is crucial for patients before participating in phase 1 trials. This study provides updated encouraging outcomes of modern phase 1 trials in solid tumours.
Funding:
National Cancer Institute.
Insights
The response rate in phase 1 cancer trials nearly doubled over 20 years without increased deaths. Combination therapies and specific agents showed improved outcomes, but heterogeneity by cancer type necessitates informed patient decisions.
Area of Science:
- Oncology
- Clinical Trials
- Cancer Therapeutics
Background:
- Phase 1 cancer trials have historically low clinical benefit expectations, potentially hindering participation and research progress.
- Comprehensive data on response and toxicity trends in phase 1 solid tumor trials are limited.
- Advances in cancer drug development may have improved treatment responses.
Purpose of the Study:
- To evaluate the trends in toxicity and response rates over time in phase 1 clinical trials for solid tumors.
- To analyze the impact of different therapeutic strategies (monotherapy vs. combination) and agent classes on trial outcomes.
- To identify factors influencing response rates across various cancer types.
Main Methods:
- Analysis of patient-level data from NCI-sponsored investigator-initiated phase 1 trials for solid tumors (2000-2019).
- Assessment of treatment-related death, on-treatment deaths, grade 3-4 toxicity, and overall response rates across distinct study periods.
- Evaluation of trends over time, cancer type-specific responses, and associations with patient characteristics, enrollment period, agents, and trial design.
Main Results:
- Overall response rate increased from 9.6% (2000-05) to 18.0% (2013-19), with no significant change in treatment-related death rates (0.7%).
- Combination therapies (15.8% response) demonstrated substantially higher response rates than monotherapies (3.5%).
- Notable improvements in response rates were observed for bladder, breast, kidney cancer, and melanoma, while pancreatic and colon cancer showed no significant change.
Conclusions:
- Phase 1 trial response rates have nearly doubled over two decades without a rise in treatment-related mortality.
- Significant heterogeneity in response exists based on cancer type, investigational agent, and trial design.
- Informed decision-making is crucial for patients considering participation in phase 1 trials due to varying outcomes.
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