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Risk-adapted modulation through de-intensification of cancer treatments: an ESMO classification
D Trapani1, M A Franzoi2, H J Burstein3
1New Drugs Development for Innovative Therapies, European Institute of Oncology, IRCCS, Milan, Italy; Department of Medical Oncology, Dana-Farber Cancer Center, Boston, USA.
Background:
The landscape of clinical trials testing risk-adapted modulations of cancer treatments is complex. Multiple trial designs, endpoints, and thresholds for non-inferiority have been used; however, no consensus or convention has ever been agreed to categorise biomarkers useful to inform the treatment intensity modulation of cancer treatments.
Methods:
An expert subgroup under the European Society for Medical Oncology (ESMO) Precision Medicine Working Group shaped an international collaborative project to develop a classification system for biomarkers used in the cancer treatment de-intensification, based on a tiered approach. A group of disease-oriented clinical, translational, methodology and public health experts, and patients' representatives provided an analysis of the status quo, and scanned the horizon of ongoing clinical trials. The classification was developed through multiple rounds of expert revisions and inputs.
Results:
The working group agreed on a univocal definition of treatment de-intensification. Evidence of reduction in the dose-density, intensity, or cumulative dose, including intermittent schedules or shorter treatment duration or deletion of segment(s) of the standard regimens, compound(s), or treatment modality must be demonstrated, to define a treatment de-intensification. De-intensified regimens must also portend a positive impact on toxicity, quality of life, health system burden, or financial toxicity. ESMO classification categorises the biomarkers for treatment modulation in three tiers, based on the level of evidence. Tier A includes biomarkers validated in prospective, randomised, non-inferiority clinical trials. The working group agreed that in non-inferiority clinical trials, boundaries are highly dependent upon the disease scenario and endpoint being studied and that the absolute differences in the outcomes are the most relevant measures, rather than relative differences. Biomarkers tested in single-arm studies with a threshold of non-inferiority are classified as Tier B. Tier C is when the validation occurs in prospective-retrospective quality cohort investigations.
Conclusions:
ESMO classification for the risk-guided intensity modulation of cancer treatments provides a set of evidence-based criteria to categorise biomarkers deemed to inform de-intensification of cancer treatments, in risk-defined patients. The classification aims at harmonising definitions on this matter, therefore offering a common language for all the relevant stakeholders, including clinicians, patients, decision-makers, and for clinical trials.
Insights
A new European Society for Medical Oncology (ESMO) classification system categorizes biomarkers for cancer treatment de-intensification based on evidence levels. This harmonizes definitions for risk-guided treatment modulation in oncology clinical trials.
Area of Science:
- Oncology
- Precision Medicine
- Clinical Trial Design
Background:
- Clinical trials for risk-adapted cancer treatment modulation lack standardized biomarker categorization.
- Existing approaches use diverse trial designs, endpoints, and non-inferiority thresholds, hindering consensus.
Purpose of the Study:
- To develop a tiered classification system for biomarkers guiding cancer treatment de-intensification.
- To establish a common language and harmonized definitions for stakeholders in precision oncology.
Main Methods:
- An international expert subgroup of the European Society for Medical Oncology (ESMO) Precision Medicine Working Group developed the classification.
- A tiered approach was used, incorporating analysis of the status quo, ongoing trials, and expert revisions.
Main Results:
- Treatment de-intensification is defined by reduced treatment intensity with a positive impact on toxicity, quality of life, or costs.
- The ESMO classification categorizes biomarkers into three tiers (A, B, C) based on the level of evidence from clinical validation.
Conclusions:
- The ESMO classification provides evidence-based criteria for categorizing biomarkers to inform risk-guided cancer treatment de-intensification.
- This system aims to harmonize definitions and facilitate communication among clinicians, patients, and decision-makers in oncology.
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