Key result
Higher post-to-pre-breast cancer ratios of cystatin-C, IL-6, and GDF-15 were associated with greater fatigue in breast cancer survivors treated with radiation, with a 2-fold increase in cystatin-C lowering vitality scores by 7.31 points.
Why the study?
Studies examining biomarkers associated with fatigue in breast cancer survivors treated with radiation were limited.
Case-Control (n=180)
Yes
Mean Difference: -7.31 (95% CI -14.2–-0.45)
Elevated ratios of inflammatory and cardiac damage biomarkers, specifically cystatin-C, IL-6, and GDF-15, are associated with increased fatigue in breast cancer survivors treated with radiation.
May guide biomarker research on post-radiation fatigue; hypothesis-generating and should not yet change practice.
Purpose Studies examining biomarkers associated with fatigue in breast cancer survivors treated with radiation are limited. Therefore, we examined the longitudinal association between serum biomarkers and post-breast cancer fatigue in survivors treated with radiation: [oxidative stress] 8-hydroxyguanosine, myeloperoxidase; [inflammation] interleukin-6 (IL-6), c-reactive protein, growth differentiation factor-15 (GDF-15), placental growth factor, transforming growth factor-beta, [cardiac damage] cystatin-C, troponin-I. Methods In a secondary analysis, we included participants from the Women’s Health Initiative if they had: a previous breast cancer diagnosis (stages I-III), no prior cardiovascular diseases, pre-and post-breast cancer serum samples drawn approximately 3 years apart, and fatigue measured using the Short-Form 36 vitality subscale at both serum collections. Biomarkers were measured using ELISA or RT-qPCR and modeled as the log 2 post-to pre-breast cancer ratio. Results Overall, 180 women with a mean (SD) age of 67.0 (5.5) years were included. The mean (SD) vitality scores were 66.2 (17.2) and 59.7 (19.7) pre- and post-breast cancer, respectively. Using multivariable weighted linear regression, higher biomarker ratios of cystatin-C, IL-6, and GDF-15 were associated with a lower vitality score (i.e., higher fatigue). For example, for each 2-fold difference in cystatin-C biomarker ratio, the vitality score was lower by 7.31 points (95% CI: −14.2, −0.45). Conclusion Inflammatory and cardiac damage biomarkers are associated with fatigue in breast cancer survivors treated with radiation; however, these findings should be replicated in a larger sample. Biomarkers could be measured in clinical practice or assessed in risk prediction models to help identify patients at high risk for fatigue.
No takes yet. Share an insight, caveat, or question.
Vasbinder et al. (2022) conducted a case-control in Breast cancer survivors treated with radiation (n=180). Serum biomarkers of inflammation, oxidative stress, and cardiac damage (cystatin-C, IL-6, GDF-15) vs. Lower biomarker ratios was evaluated on Post-breast cancer fatigue (SF-36 vitality score) (MD -7.31, 95% CI -14.2 to -0.45). Higher post-to-pre-breast cancer ratios of cystatin-C, IL-6, and GDF-15 were associated with greater fatigue in breast cancer survivors treated with radiation, with a 2-fold increase in cystatin-C lowering vitality scores by 7.31 points.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: