Skip to content

Variability of Definitions for Survival Endpoints and Surrogate Properties for OS in Sarcoma Trials: a Meta-analysis

Survival Endpoints in Randomized Clinical Trials in Sarcoma Patients: Meta-analyses for the Assessment of the Impact Various Definitions on Trials' Results and of Surrogate Properties for OS

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT02873923
Acronym
DATECAN-2
Enrollment
2846
Registered
2016-08-22
Start date
2012-10-31
Completion date
2017-01-01
Last updated
2021-01-25

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cancer

Keywords

clinical trial, surrogate endpoints, meta analysis

Brief summary

The DATECAN-2 project aims at assessing the surrogate properties for OS of several time-to-event endpoints through meta-analyses of completed and published randomized controlled trials. Two main cancer localization are concerned: breast cancer and soft-tissue sarcomas. The impact of survival endpoints' definitions on the trials' results and conclusions will also be evaluated.

Detailed description

Background: In randomized phase III cancer clinical trials, the validated and most objectively defined evaluation criterion is overall survival (OS). Therapeutic progress, which in certain contexts has significantly reduced overall mortality, the development of new types of cytostatic treatments (as opposed to cytotoxic treatments), the current context of strategic trials and the multiplication of lines of treatment have resulted in the necessity of creating new evaluation criteria measuring treatment efficacy sooner and more precisely: for example, progression-free survival in second line treatment, duration of local control, and time until treatment failure. These types of surrogate endpoints are commonly used in phase II trials but are increasingly being used to replace overall survival in phase III trials. Their development is strongly influenced by the necessity of reducing clinical trial duration, cost and number of patients. However while these survival endpoints are frequently used, they are often poorly defined and when they are, the definition can vary between trials. The lack of standardized definitions constitutes a clear limitation to their use as primary endpoints. Furthermore, this variability of definitions can have an important impact on trials' results by affecting power and estimation. The ongoing DATECAN-1 project is aimed at providing guidelines for the definitions of survival endpoints in cancer trials (2009-2011 grant from the French League Against Cancer). Standardized recommendations will be available for survival endpoints commonly used for various cancer sites including pancreas, sarcomas and GIST (gastro-intestinal stromal tumors), breast, stomach. Objectives: Following these guidelines, one can wonder how sensitive are these definitions? Or similarly, how do survival endpoints' definitions impact the conclusions of clinical trials? The objective of the DATECAN-2 study is to assess the impact of survival endpoints' definitions, as defined by the consensus guidelines, on trials' results and conclusions. The second objective is to study the surrogate properties for OS of these survival endpoints. Methods: The evaluation of the impact of the variability of the definitions of survival endpoints on the results of clinical trials will be evaluated using individual data from datasets collected in the context of published (academic) clinical trials, as well as simulated datasets. After approval by the sponsors, data will be analyzed using various endpoints' definitions including (i) the definition provided in the publication and (ii) the definition provided by the guidelines. We will identify which survival endpoint, as defined by the guidelines, was reported in the publication. Next, realistic data sets will be simulated that mimic data that could be observed in randomized cancer trials. We will generate data sets with varying proportions of events (number of deaths, progression, etc) depending on the survival endpoints of interest. Survival endpoints will be compared across treatment arms using the definition provided by the guidelines, and based on various scenarios (different proportions of events, length of follow-up, etc). Using data from published data sets, we will evaluate survival endpoints in terms of surrogate candidates for OS. A hierarchy of the survival endpoints will be proposed according to their surrogate properties based on two criteria: the Fleming classification and the R2 value for validated surrogates. Depending on the number of clinical trials, single-trial or multiple-trials method will be employed. Single-trial methodology relies on Prentice criteria and Freedman's proportion of treatment effect (PTE) explained by the surrogate. In case of multiple trials, and when meta-analysis of clinical trials is feasible, surrogacy of candidate endpoints for OS will also be explored using weighted linear regression, which jointly estimates the level of association between endpoints and the trial-level association (R²) between treatment effects on the candidate surrogate and the final endpoint. Based on these results (R² and PTE), survival endpoints will be ranked according to their surrogate capabilities for OS. Expected results: Analysis of the sensitivity of clinical trials' results to the survival endpoints' definitions and surrogacy properties are key features when designing and conducting clinical trials. Based on our results, we will be able to anticipate the expected impact of the definitions on effect size, sample size and power. We will be able to estimate these parameters more precisely and as such provide more efficient estimations. Similarly our assessment of the surrogate properties of the survival endpoints should help us for the selection of the best surrogate marker for OS, and thus limit biases. Overall, by producing less biased results and more efficient designs, our project should have an important role in the design and conduct of future randomized trials.

Interventions

DRUGundefined

Chemotherapy drug (meta-analyses of randomized trials)

Sponsors

National Cancer Institute, France
CollaboratorOTHER_GOV
Ligue contre le cancer, France
CollaboratorOTHER
Institut du Cancer de Montpellier - Val d'Aurelle
CollaboratorOTHER
Centre Georges Francois Leclerc
CollaboratorOTHER
Institut Bergonié
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

No patient will be included. This project concern Phase III clinical trials with following criteria : Inclusion Criteria: * Phase III clinical trials that included overall survival (OS) as endpoint and another time-to-event endpoint as primary or secondary endpoint * Phase III clinical trials that included patients with metastatic soft tissue sarcoma

Design outcomes

Primary

MeasureTime frameDescription
Overall Survivalup to 18 months following randomizationNumber of deaths

Secondary

MeasureTime frameDescription
Progression-free SurvivalUp to 12 months following randomizationNumber of progressions or deaths. Progression is defined using Response Evaluation Criteria In Solid Tumors Criteria (RECIST v1.0), as a 20% increase in the sum of the longest diameter of target lesions, or a measurable increase in a non-target lesion, or the appearance of new lesions

Participant flow

Participants by arm

ArmCount
Patients With a Metastatic Soft Tissue Sarcoma
All patients included in eligible clinical trials of the meta-analysis
2,846
Total2,846

Baseline characteristics

CharacteristicPatients With a Metastatic Soft Tissue Sarcoma
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
0 Participants
Age, Categorical
Between 18 and 65 years
2846 Participants
Sex: Female, Male
Female
1423 Participants
Sex: Female, Male
Male
1423 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
1,704 / 2,846
other
Total, other adverse events
0 / 0
serious
Total, serious adverse events
0 / 0

Outcome results

Primary

Overall Survival

Number of deaths

Time frame: up to 18 months following randomization

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Patients With a Metastatic Soft Tissue SarcomaOverall Survival1704 Participants
Secondary

Progression-free Survival

Number of progressions or deaths. Progression is defined using Response Evaluation Criteria In Solid Tumors Criteria (RECIST v1.0), as a 20% increase in the sum of the longest diameter of target lesions, or a measurable increase in a non-target lesion, or the appearance of new lesions

Time frame: Up to 12 months following randomization

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Patients With a Metastatic Soft Tissue SarcomaProgression-free Survival2303 Participants
Post Hoc

Individual-level Association

Individual-level association between 12-month progression-free survival and 18-month overall survival

Time frame: within 18 months following randomization

ArmMeasureValue (NUMBER)
Patients With a Metastatic Soft Tissue SarcomaIndividual-level Association0.66 Correlation coefficient
95% CI: [0.63, 0.68]
Post Hoc

Trial-level Association

Trial-level association between 12-month progression-free survival and 18-month overall survival

Time frame: within 18 months following randomization

ArmMeasureValue (NUMBER)
Patients With a Metastatic Soft Tissue SarcomaTrial-level Association0.00 Correlation coefficient
95% CI: [0, 0.005]

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026