Predicting Patterns of Distant Metastasis in Breast Cancer Patients following Local Regional Therapy Using Machine Learning.
Audrey ShinerAlex KissKhadijeh SaedniaKatarzyna J JerzakSonal GandhiFang-I LuUrban EmmeneggerLauren FleshnerAndrew LagreeMarie Angeli AleraMateusz BieleckiEthan LawBrianna LawDylan KamJonathan KleinChristopher J PinardAlex ShenfieldAli Sadeghi-NainiWilliam Tyler TranPublished in: Genes (2023)
Up to 30% of breast cancer (BC) patients will develop distant metastases (DM), for which there is no cure. Here, statistical and machine learning (ML) models were developed to estimate the risk of site-specific DM following local-regional therapy. This retrospective study cohort included 175 patients diagnosed with invasive BC who later developed DM. Clinicopathological information was collected for analysis. Outcome variables were the first site of metastasis (brain, bone or visceral) and the time interval (months) to developing DM. Multivariate statistical analysis and ML-based multivariable gradient boosting machines identified factors associated with these outcomes. Machine learning models predicted the site of DM, demonstrating an area under the curve of 0.74, 0.75, and 0.73 for brain, bone and visceral sites, respectively. Overall, most patients (57%) developed bone metastases, with increased odds associated with estrogen receptor (ER) positivity. Human epidermal growth factor receptor-2 (HER2) positivity and non-anthracycline chemotherapy regimens were associated with a decreased risk of bone DM, while brain metastasis was associated with ER-negativity. Furthermore, non-anthracycline chemotherapy alone was a significant predictor of visceral metastasis. Here, clinicopathologic and treatment variables used in ML prediction models predict the first site of metastasis in BC. Further validation may guide focused patient-specific surveillance practices.
Keyphrases
- end stage renal disease
- machine learning
- epidermal growth factor receptor
- estrogen receptor
- ejection fraction
- chronic kidney disease
- newly diagnosed
- peritoneal dialysis
- prognostic factors
- endothelial cells
- stem cells
- insulin resistance
- lymph node
- adipose tissue
- bone mineral density
- primary care
- patient reported outcomes
- glycemic control
- radiation therapy
- brain injury
- tyrosine kinase
- deep learning
- big data
- mesenchymal stem cells
- advanced non small cell lung cancer
- body composition
- postmenopausal women
- bone regeneration
- soft tissue
- cell therapy
- replacement therapy