Efficacy of Long-term Alendronate Treatment to Treat Bone Mineral Disorders in Renal Transplant

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24 Jun, 24

 

Introduction

In end stage renal disease (ESRD) patients, bone mineral disorders are common. Even after a successful renal transplant, osteopenia and osteoporosis remain prevalent. Renal transplant recipients usually have low vitamin D levels and calcium and phosphorus deficiency. Bone mineral density (BMD) loss, which increases the mortality rate in kidney transplant recipients in the long term, may develop despite calcium and vitamin D replacement. Treatment of post-transplant bone mineral disorders includes phosphorus, calcium, vitamin D supplementations, calcimimetics, anabolic and antiresorptive agents such as bisphosphonates.

Aim

To evaluate the  effects of long-term administration of alendronate sodium for treating bone loss in renal transplant recipients (RTRs).

Patient Profile

Renal transplant recipients who had received 3 consecutive BMD measurements and received the same treatment for at least 2 years.

Methods

  • All patients were divided into 3 groups.

     

  • Efficacy of alendronate was determined by comparing sociodemographic data such as age, sex, body mass index (BMI), transplantation follow-up time and baseline, 12- and 24-month biochemical parameters (serum creatinine, calcium Ca2+], phosphorus [P], parathyroid hormone [PTH], and 25-OH vitamin D levels [25(OH) vitamin D]), and BMD measurements between groups.

    Results

  • Femoral neck and lumbar spine BMD were stable in patients who received alendronate, calcium, and vitamin D3 (Group 1) at the end of the first year.
  • In Group 1, significant improvement in the lumbar spine and femoral neck BMD were seen at the end of the second year.
  • No improvement in BMD levels was observed in Groups 2 and 3.

Table 1 : Lumbar Spine and Femoral Neck Bone Mineral Density Measurements

Parameter

 

Group 1

(n = 28)

Group 2

(n = 31)

Group 3

(n = 23)

p

Lumbar (L1-L5) T score

Baseline

−2.12 + 0.88

−0.71 + 0.87

−0.35 + 1.2

<.001

 

1 y

−2.04 + 0.98

−0.65 + 0.94

−0.06 + 1.4

<.001

 

2 y

−1.91 + 1.08

−0.72 + 1.0

−0.04 + 1.5

<.001

Femoral neck T score

Baseline

−2.0 + 0.56

−0.71 + 1.0

−0.35 + 1.0

<.001

 

1 y

−1.9 + 0.5

−0.72 + 1.3

−0.26 + 1.1

<.001

 

2 y

−1.74 + 0.6

−0.66 + 1.3

−0.20 + 1.6

<.001

Lumbar spine (g/cm2)

Baseline

0.892 + 0.12

1.020 + 0.14

1.104 + 0.16

<.001

 

1 y

0.886 + 0.12

1.034 +0.14

1.135 + 0.17

<.001

 

2 y

0.901 + 0.14

1.025 + 0.12

1.145 + 0.17

<.001

Femur neck (g/cm2)

Baseline

0.761 + 0.11

0.884 + 0.15

0.977 + 0.17

<.001

 

1 y

0.758 + 0.09

0.866 + 0.17

0.977 + 0.16

<.001

 

2 y

0.781 + 0.10

0.887 + 0.18

0.975 + 0.22

.002

 

  • Correlation analysis showed
    • Negative correlation between the baseline femoral neck T score and female sex, baseline PTH and BMI and
    • Positive correlation between baseline femoral neck T score and creatinine level in Group 1 patients.
    • Basal BMI & femoral neck BMD in Group 2 showed a positive correlation
    • No correlation between baseline parameters, demographic data, and BMDwas seen in group 3 patients

Conclusion

  • In renal transplant patients, addition of alendronate to treatment stops bone loss. When continued for a long term it may reverse BMD loss.

Reference

Transplantation Proceedings. 2022; 54: 658- 662