Dosiomics-Based Prediction of Radiation-Induced Valvulopathy after Childhood Cancer

Author:

Chounta Stefania1234ORCID,Allodji Rodrigue1235ORCID,Vakalopoulou Maria4,Bentriou Mahmoud4,Do Duyen Thi123,De Vathaire Florent123ORCID,Diallo Ibrahima67,Fresneau Brice8ORCID,Charrier Thibaud1239,Zossou Vincent123510,Christodoulidis Stergios4,Lemler Sarah4ORCID,Letort Le Chevalier Veronique4ORCID

Affiliation:

1. Université Paris-Saclay, Univ. Paris-Sud, UVSQ, CESP, Cancer and Radiation Team, F-94805 Villejuif, France

2. INSERM, CESP, Cancer and Radiation Team, F-94805 Villejuif, France

3. Gustave Roussy, Department of Clinical Research, Cancer and Radiation Team, F-94805 Villejuif, France

4. Université Paris-Saclay, CentraleSupélec, Mathématiques et Informatique pour la Complexité et les Systèmes, F-91190 Gif-sur-Yvette, France

5. Polytechnic School of Abomey-Calavi (EPAC), University of Abomey-Calavi, 01, Cotonou P.O. Box 2009, Benin

6. Department of Radiation Oncology, Gustave Roussy, F-94800 Villejuif, France

7. Gustave Roussy, Inserm, Radiothérapie Moléculaire et Innovation Thérapeutique, Paris-Saclay University, F-94800 Villejuif, France

8. Gustave Roussy, Université Paris-Saclay, Department of Pediatric Oncology, F-94805 Villejuif, France

9. Institut Curie, PSL Research University, INSERM, U900, F-92210 Saint Cloud, France

10. Institut de Formation et de Recherche en Informatique, (IFRI-UAC), Cotonou P.O. Box 2009, Benin

Abstract

Valvular Heart Disease (VHD) is a known late complication of radiotherapy for childhood cancer (CC), and identifying high-risk survivors correctly remains a challenge. This paper focuses on the distribution of the radiation dose absorbed by heart tissues. We propose that a dosiomics signature could provide insight into the spatial characteristics of the heart dose associated with a VHD, beyond the already-established risk induced by high doses. We analyzed data from the 7670 survivors of the French Childhood Cancer Survivors’ Study (FCCSS), 3902 of whom were treated with radiotherapy. In all, 63 (1.6%) survivors that had been treated with radiotherapy experienced a VHD, and 57 of them had heterogeneous heart doses. From the heart–dose distribution of each survivor, we extracted 93 first-order and spatial dosiomics features. We trained random forest algorithms adapted for imbalanced classification and evaluated their predictive performance compared to the performance of standard mean heart dose (MHD)-based models. Sensitivity analyses were also conducted for sub-populations of survivors with spatially heterogeneous heart doses. Our results suggest that MHD and dosiomics-based models performed equally well globally in our cohort and that, when considering the sub-population having received a spatially heterogeneous dose distribution, the predictive capability of the models is significantly improved by the use of the dosiomics features. If these findings are further validated, the dosiomics signature may be incorporated into machine learning algorithms for radiation-induced VHD risk assessment and, in turn, into the personalized refinement of follow-up guidelines.

Funder

Gustave Roussy Foundation

ITMO (Instituts thématiques multiorganismes) Cancer d’Aviesan Program

INCa/ARC (Institut national du cancer) foundation

Foundation ARC for Cancer Research

“START” PAIR Research Program

“Ligue Nationale Contre le Cancer” association

Publisher

MDPI AG

Subject

Cancer Research,Oncology

Reference65 articles.

1. INSERM (2022). 5-Year Overall Survival Rates of Childhood Cancer in Mainland France over 2000–2014, by Diagnostic and Age Groups-RNCE, INSERM.

2. Society, A.C. (2023). Key Statistics for Childhood Cancers, American Cancer Society.

3. SIOP Europe (2023, February 28). Mission and Vision. Available online: https://siope.eu/about-siope/mission-and-vision/.

4. The Evolving Role of Radiotherapy for Pediatric Cancers with Advancements in Molecular Tumor Characterization and Targeted Therapies;Shen;Front. Oncol.,2021

5. Historical Trends in the use of radiation for pediatric cancers: 1973–2008;Jairam;Int. J. Radiat. Oncol. Biol. Phys.,2013

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