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Pathogenesis of bone loss in heart transplant candidates and recipients
Katharina Kerschan-Schindl1, Jasmine Strametz-Juranek, Georg Heinze
1Department of Physical Medicine and Rehabilitation, University of Vienna, Vienna, Austria . Katharina.Kerschan@akh-wien.ac.at
Insights
Heart transplant candidates and recipients show altered bone metabolism. Recipients have lower bone density and higher bone turnover markers, potentially due to immunosuppressive drugs.
Area of Science:
- Cardiology
- Endocrinology
- Nephrology
Background:
- Heart transplantation (HTX) is linked to reduced bone mineral density and altered bone metabolism.
- Understanding bone pathophysiology in HTX candidates and recipients is crucial.
Purpose of the Study:
- To investigate the pathophysiology of bone metabolism in heart transplant candidates and recipients.
- To compare bone metabolism and bone mineral density between HTX candidates and recipients.
Main Methods:
- Compared 36 HTX recipients and 36 HTX candidates.
- Assessed biochemical bone metabolism parameters and bone mineral density.
Main Results:
- HTX recipients exhibited higher osteocalcin, bone-specific alkaline phosphatase, cross-linked-N-telopeptide of type I collagen, estradiol, creatinine, and BUN.
- HTX recipients showed lower calcium-creatinine ratio, thyrotropin, thyroxine, and bone mineral density compared to candidates.
- HTX candidates had decreased renal function and increased bone resorption; recipients had additional increases in alkaline phosphatase and osteocalcin.
Conclusions:
- In HTX candidates, bone metabolism disturbances may stem from renal insufficiency, diuretics, and immobility.
- In HTX recipients, immunosuppressive therapy (glucocorticoids, cyclosporine) appears responsible for bone metabolism changes.
Background:
Heart transplantation (HTX) is associated with decreased bone mineral density and changes in bone metabolism. We conducted this study to evaluate the pathophysiology of bone metabolism in HTX candidates and recipients.
Methods:
Thirty-six HTX recipients were compared with 36 HTX candidates concerning biochemical parameters of bone metabolism and bone mineral density.
Results:
Osteocalcin, bone-specific alkaline phosphatase, cross-linked-N-telopeptide of type I collagen, estradiol, serum creatinine, and blood urea nitrogen concentrations were significantly higher, whereas the calcium-creatinine ratio, thyrotropin, thyroxine, and bone mineral density were significantly lower in HTX recipients than in HTX candidates. Compared with a control group, HTX candidates had decreased renal function and increased bone resorption, whereas HTX recipients additionally had increased alkaline phosphatase and osteocalcin levels. In HTX recipients, we found positive correlations between creatinine clearance and bone mineral density; daily and cumulative cortisone doses were not associated with bone mineral density.
Conclusions:
In HTX candidates, disturbances in bone metabolism with increased bone resorption may be caused partly by existing low-grade renal insufficiency, regular intake of loop diuretics, and restriction of mobility. In HTX recipients, immunosuppressive therapy-glucocorticoids and cyclosporine-seem to be responsible for changes in bone metabolism.
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