Abstract

We investigated the dynamic change of mineral bone metabolism and explored factors associated with the alteration of mineral bone metabolism in the living kidney donors (LKDs) after uni-nephrectomy. One-hundred forty-four prospective LKDs who underwent kidney donation between May 2016 and September 2018 were enrolled. Laboratory evaluation regarding mineral bone metabolism including intact parathyroid hormone (iPTH), renal fractional excretion of phosphate (FEPi), and technetium-99m diethylenetriaminepentaacetate (99mTc-DTPA) scan was performed predonation and 6 months after donation. We divided donors into two groups, the low ΔFEPi and high ΔFEPi groups, according to the change of FEPi after donation, and investigated significant risk factors associated with high ΔFEPi. At 6 months after uni-nephrectomy, estimated glomerular filtration rate (eGFR) significantly declined by 30.95 ml/min/1.73 m2 (p < 0.001), but the measured GFR (mGFR) of the remaining kidney by 99mTc-DTPA scan showed significant increase. Serum phosphorus decreased (p < 0.001), whereas FEPi (13.34–20.23%, p < 0.001) and serum iPTH (38.70–52.20 pg/ml, p < 0.001) showed significant increase. In the high ΔFEPi group, the proportion of preexisting hypertension (HTN) was higher, the baseline FEPi was lower, and the percent decline in eGFR was greater. Moreover, all of these factors were independently associated with high ΔFEPi upon multivariable logistic regression analysis. LKDs showed a significant change in mineral bone metabolism after uni-nephrectomy, especially when the donors had preexisting HTN, lower baseline FEPi, and showed greater loss of kidney function. Hence, strict monitoring of the mineral bone metabolism parameters and bone health may be required for these donors.

Highlights

  • It is well known that most patients with chronic kidney disease (CKD) show a progressive deterioration in mineral homeostasis

  • We described the postdonation change of the renal function and mineral bone metabolism parameters and investigated the determinants of mineral bone metabolism alteration after uni-nephrectomy

  • We found that the percent decline in estimated glomerular filtration rate (eGFR) following uni-nephrectomy was less than the mean percent of dk-measured glomerular filtration rate (GFR) (mGFR) due to functional gain of the remaining kidney

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Summary

Introduction

It is well known that most patients with chronic kidney disease (CKD) show a progressive deterioration in mineral homeostasis. Demographics Age (years) Male (n, %) HTN (n, %) Body mass index (kg/m2) Lt. kidney donation (n, %) Adjusted dk-mGFR (ml/min/1.73m2) Adjusted rk-mGFR (ml/min/1.73m2) Adjusted dk-volume (cm3/1.73m2) Adjusted rk-volume (cm3/1.73m2) Biochemical parameters Serum creatinine (mg/dl) eGFR (CKD-EPI) (ml/min/1.73m2) Alkaline phosphatase (U/L) Serum albumin (g/dl) Serum corrected calcium (mg/dl) Serum phosphorus (mg/dl) 25-hydroxyvitamin D (ng/ml) Intact PTH (pg/ml) 24-h urine protein (mg/day) 24-h FEPi (%)

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