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Background and Objectives: Environmental exposure to endocrine-disrupting chemicals (EDCs) is increasingly recognized as a potential contributor to cancer-related biological variability; however, human biomonitoring data in oncology populations remain limited. The present study aimed to assess urinary concentrations of selected phenolic EDCs and their associations with cardiometabolic, hematological, inflammatory, and survival-related parameters in patients with advanced lung cancer. Materials and Methods: A total of 190 patients diagnosed with stage IIIB/IV lung cancer were included in this study. Urinary concentrations of bisphenol A (BPA), bisphenol S (BPS), triclosan (TCS), and resorcinol (RCO) were determined using validated analytical methods. Associations between exposure biomarkers and clinical laboratory parameters were evaluated using sex-stratified statistical analyses and regression models adjusted for age and body mass index. Results: TCS was the most frequently quantified compound (29.47%), followed by BPS (27.37%), RCO (11.58%), and BPA (7.89%). Higher odds of TCS quantification were observed in patients with lung adenocarcinoma and a higher probability of BPA quantification in patients with squamous-cell carcinoma. Sex-specific exposure patterns were observed, with higher BPA and BPS concentrations measured among female patients. Exposure to phenolic EDCs was associated with alterations in kidney function biomarkers, liver enzyme activity, inflammatory cell profiles, and anthropometric indicators. In particular, BPA and BPS showed associations with renal function markers and systemic inflammatory parameters, while TCS exposure was related to reduced leukocyte subpopulations. Survival analysis demonstrates borderline associations for BPA between exposure groups. Conclusions: These findings provide novel human biomonitoring evidence linking exposure to phenolic endocrine-disrupting chemicals with systemic metabolic and inflammatory variability in patients with advanced lung cancer. The observed associations support the biological plausibility that environmental endocrine disruptors may contribute to interindividual heterogeneity in cancer-related physiological responses.
Đurić et al. (Tue,) studied this question.