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Determinants of bone parameters in young paediatric cancer survivors: the iBoneFIT project
Andres Marmol-Perez1, Esther Ubago-Guisado2,3, Francisco J Llorente-Cantarero4,5,6
1Department of Physical Education and Sports, Faculty of Sports Science, Sport and Health University Research Institute (iMUDS), University of Granada, Granada, Spain.
Insights
Lean mass is key for bone health in young cancer survivors. Improving lean mass and considering time since peak height velocity can enhance bone development after treatment.
Area of Science:
- Paediatric Endocrinology
- Oncology
- Bone Metabolism
Background:
- Paediatric cancer treatments and disease negatively impact bone health.
- Endocrine side effects are a significant concern.
- Novel insights into bone health predictors in survivors are needed.
Purpose of the Study:
- To identify independent predictors of bone health in young paediatric cancer survivors.
- To understand the factors influencing bone mineral density and structure.
Main Methods:
- Cross-sectional multicentre study within the iBoneFIT framework.
- 116 young paediatric cancer survivors (12.1 ± 3.3 years) were recruited.
- Evaluated predictors included body composition, physical activity, and time-related factors.
Main Results:
- Region-specific lean mass was the strongest predictor of areal bone mineral density (aBMD) and hip geometry.
- Years from peak height velocity (PHV) positively correlated with aBMD.
- Time from treatment completion also positively associated with hip aBMD and geometry.
Conclusions:
- Region-specific lean mass is the most important determinant of bone health in paediatric cancer survivors.
- Targeting lean mass is recommended for interventions to improve bone parameters.
- Somatic maturity (years from PHV) is crucial for bone development post-diagnosis.
Background:
Bone health is remarkably affected by endocrine side effects due to paediatric cancer treatments and the disease itself. We aimed to provide novel insights into the contribution of independent predictors of bone health in young paediatric cancer survivors.
Methods:
This cross-sectional multicentre study was carried out within the iBoneFIT framework in which 116 young paediatric cancer survivors (12.1 ± 3.3 years old; 43% female) were recruited. The independent predictors were sex, years from peak height velocity (PHV), time from treatment completion, radiotherapy exposure, region-specific lean and fat mass, musculoskeletal fitness, moderate-vigorous physical activity and past bone-specific physical activity.
Results:
Region-specific lean mass was the strongest significant predictor of most areal bone mineral density (aBMD), all hip geometry parameters and Trabecular Bone Score (β = 0.400-0.775, p ≤ 0.05). Years from PHV was positively associated with total body less head, legs and arms aBMD, and time from treatment completion was also positively associated with total hip and femoral neck aBMD parameters and narrow neck cross-sectional area (β = 0.327-0.398, p ≤ 0.05; β = 0.135-0.221, p ≤ 0.05), respectively.
Conclusion:
Region-specific lean mass was consistently the most important positive determinant of all bone parameters, except for total hip aBMD, all Hip Structural Analysis parameters and Trabecular Bone Score.
Impact:
The findings of this study indicate that region-specific lean mass is consistently the most important positive determinant of bone health in young paediatric cancer survivors. Randomised clinical trials focused on improving bone parameters of this population should target at region-specific lean mass due to the site-specific adaptations of the skeleton to external loading following paediatric cancer treatment. After paediatric cancer diagnosis, years from peak height velocity (somatic maturity) is critical for bone development.
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