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Published on: September 6, 2017
Vitamin D Deficiency in Pediatric Hematopoietic Stem Cell Transplantation Patients Despite Both Standard and
Gregory Wallace1, Sonata Jodele1, Kasiani C Myers1
1Division of Bone Marrow Transplantation and Immune Deficiency, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Insights
Vitamin D deficiency is common in hematopoietic stem cell transplant (HSCT) patients. Standard supplementation guidelines are insufficient to maintain optimal vitamin D levels post-transplant, necessitating further research for improved dosing strategies.
Area of Science:
- Hematology
- Endocrinology
- Transplantation Medicine
Background:
- Over 70% of pediatric and young adult patients exhibit vitamin D deficiency before hematopoietic stem cell transplantation (HSCT).
- Vitamin D deficiency is linked to poorer survival outcomes at 100 days post-HSCT.
Purpose of the Study:
- To determine the vitamin D (VD) dosage required to achieve and sustain optimal VD levels (30-60 ng/mL) in the first three months after HSCT.
- To assess the efficacy of personalized, high-dose VD supplementation with real-time monitoring.
Main Methods:
- Two cohorts were studied: a pre-intervention group (n=35) following standard National Kidney Foundation guidelines and an intervention group (n=25) receiving high-dose VD with dose adjustments.
- Real-time VD monitoring and personalized supplementation were employed in the intervention cohort.
Main Results:
- Only 43% of the pre-intervention cohort achieved therapeutic VD levels.
- The intervention cohort showed improvement, with 64% achieving therapeutic VD levels despite receiving >200 IU/kg/day enterally.
- The median VD level in sufficient patients was 40 ng/mL.
Conclusions:
- Current VD replacement guidelines are inadequate for HSCT recipients.
- Higher or modified dosing strategies are necessary to achieve optimal VD levels in this patient population.
- Further research is required to establish appropriate VD dosing protocols for HSCT patients.
Abstract:
We recently reported that more than 70% of pediatric and young adult patients had a vitamin D (VD) deficiency at the time of their hematopoietic stem cell transplantation (HSCT). Moreover, VD deficiency was associated with inferior survival at 100 days after transplantation. The goal of the present study was to evaluate the VD requirements needed to maintain an optimal VD level (30 to 60 ng/mL) during the first 3 months after transplantation using real-time VD monitoring and personalized VD supplementation. We examined 2 cohorts in this study: cohort 1, the "preintervention" cohort (n = 35), who were treated according to National Kidney Foundation guidelines for VD therapy, and cohort 2, the "intervention" cohort (n = 25) who were treated with high-dose VD with an aggressive dosage increase in those who remained VD-insufficient. Results from cohort 1 showed that despite aggressive monitoring and VD supplementation, therapeutic vitamin D levels were difficult to achieve and maintain in HSCT recipients during the early post-transplantation period. Only 43% of cohort 1 achieved a therapeutic VD level, leading to our intervention in cohort 2. Outcomes improved in cohort 2, but still only 64% of cohort 2 patients achieved a therapeutic VD level despite receiving >200 IU/kg/day of VD enterally. The median VD level in patients who did achieve sufficient levels was 40 ng/mL, with only 1 patient in each cohort achieving a supratherapeutic but nontoxic level. These data indicate that standard guidelines for VD replacement are inadequate in HSCT recipients, and further work is needed to define more appropriate dosing in this clinical setting.
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