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Effect of kidney donation on bone mineral metabolism
Thomas F Hiemstra1,2, Jane C Smith2, Kenneth Lim3
1Cambridge Clinical Trials Unit, University of Cambridge, Cambridge, United Kingdom.
Abstract:
Kidney donation results in reductions in kidney function and lasting perturbations in phosphate homeostasis, which may lead to adverse cardiovascular sequelae. However, the acute effects of kidney donation on bone mineral parameters including regulators of calcium and phosphate metabolism are unknown. We conducted a prospective observational controlled study to determine the acute effects of kidney donation on mineral metabolism and skeletal health. Biochemical endpoints were determined before and after donation on days 1, 2 and 3, 6 weeks and 12 months in donors and at baseline, 6 weeks and 12 months in controls. Baseline characteristic of donors (n = 34) and controls (n = 34) were similar: age (53±10 vs 50±14 years, p = 0.33), BMI (26.3±2.89 vs 25.9±3.65, p = 0.59), systolic BP (128±13 vs 130±6 mmHg, p = 0.59), diastolic BP (80±9 vs 81±9 mmHg, p = 0.68) and baseline GFR (84.4±20.2 vs 83.6±25.2 ml/min/1.73m2, p = 0.89). eGFR reduced from 84.4±20.2 to 52.3±17.5 ml/min/1.73m2 (p<0.001) by day 1 with incomplete recovery by 12 months (67.7±22.6; p = 0.002). Phosphate increased by day 1 (1.1(0.9-1.2) to 1.3(1.1-1.4) mmol/L, p <0.001) but declined to 0.8(0.8-1.0) mmol/L (p<0.001) before normalizing by 6 weeks. Calcium declined on day 1 (p = 0.003) but recovered at 6 weeks or 12 months. PTH and FGF-23 remained unchanged, but α-Klotho reduced by day 1 (p = 0.001) and remained low at 6 weeks (p = 0.02) and 1 year (p = 0.04). In this study, we conclude that kidney donation results in acute disturbances in mineral metabolism characterised by a reduced phosphate and circulating α-Klotho concentration without acute changes in the phosphaturic hormones FGF23 and PTH.
Insights
Kidney donation acutely impacts mineral metabolism, causing temporary drops in phosphate and alpha-Klotho levels. These changes in kidney donors highlight the need for monitoring bone health post-donation.
Area of Science:
- Nephrology
- Endocrinology
- Bone Metabolism
Background:
- Kidney donation reduces kidney function and alters phosphate homeostasis, potentially leading to cardiovascular issues.
- The immediate effects of kidney donation on bone mineral parameters and calcium/phosphate regulators are not well understood.
Purpose of the Study:
- To investigate the acute effects of kidney donation on mineral metabolism and skeletal health.
- To analyze changes in calcium, phosphate, parathyroid hormone (PTH), FGF-23, and alpha-Klotho.
Main Methods:
- Prospective observational controlled study comparing kidney donors (n=34) with controls (n=34).
- Biochemical markers measured pre-donation and at specific time points post-donation (days 1-3, 6 weeks, 12 months).
Main Results:
- Estimated glomerular filtration rate (eGFR) significantly decreased post-donation, with incomplete recovery at 12 months.
- Phosphate levels transiently increased then decreased, normalizing by 6 weeks; calcium levels dropped acutely but recovered.
- Alpha-Klotho levels decreased significantly by day 1 and remained low at 6 weeks and 1 year; PTH and FGF-23 remained unchanged.
Conclusions:
- Kidney donation causes acute mineral metabolism disturbances, notably reduced phosphate and alpha-Klotho concentrations.
- These acute changes occur without immediate alterations in phosphaturic hormones FGF23 and PTH.
- The findings underscore the importance of monitoring mineral and bone health following kidney donation.
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