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Scanning Skeletal Remains for Bone Mineral Density in Forensic Contexts
Published on: January 29, 2018
Longitudinal changes in BMD in adults with cystic fibrosis
Reem Jad1, Xiayi Ma1, Sanja Stanojevic2
1Division of Respirology, St. Michael's Hospital, University of Toronto, Toronto, ON M5B 1W8, Canada.
None:
Improved survival in people with cystic fibrosis (pwCF) presents new complexities of care, including CF-related bone disease, a common complication in older pwCF. The trajectory of bone loss with age in this population remains unclear. The objective of this study was to estimate the average rate of change in BMD in adults with CF. This retrospective study included adults with CF, aged 25-48 yr, followed between January 2000 and December 2021. Subjects with at least one DXA scan were included. Scans obtained posttransplantation, after the initiation of bisphosphonates or cystic fibrosis transmembrane conductance regulator modulator therapy was excluded. The primary outcome was BMD (g/cm2) at the LS and FN. A linear mixed-effects model with both random intercept and random slope terms was used to estimate the average annual change in BMD. A total of 1502 DXA scans in 500 adults (average age 28.4 y) were included. There was a statistically significant annual decline in BMD of -0.008 gm/cm2/yr (95% CI, -0.009 to -0.007) at the FN and -0.006 gm/cm2/yr (95% CI, -0.007 to -0.004) at the LS. Relative to BMD at age 25, there was a 18.8% decline at the FN by age 48 yr and a 11% decline at the LS. Pancreatic insufficient subjects had a faster rate of decline in BMD compared with pancreatic sufficient subjects. After adjusting for markers of disease severity, the annual rate of decline remained significant. Individuals with CF experience bone loss at an age when it is not anticipated, thereby entering early adulthood, where further bone loss is inevitable especially with the decrease in estrogen during menopause, with suboptimal BMD. As the CF population ages, it will become very important to consider interventions to maximize bone health.
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