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Published on: January 22, 2020
Vitamin D status in children with intestinal failure who have achieved enteral autonomy
Chelsea A Lepus1, Kate Samela1, Karan M Emerick1
1Division of Pediatric Gastroenterology, Hepatology, and Nutrition, Connecticut Children's Medical Center, Hartford, Connecticut, USA.
Insights
Vitamin D deficiency and osteopenia remain common in children with intestinal failure even after achieving enteral autonomy. Shorter gut length and longer parenteral nutrition duration are linked to deficiency, necessitating ongoing monitoring and adjusted vitamin D dosing.
Area of Science:
- Pediatric Gastroenterology
- Nutritional Science
- Bone Metabolism
Background:
- Vitamin D deficiency is common in children with intestinal failure (IF) on parenteral nutrition (PN).
- Limited data exist on vitamin D status post-enteral autonomy (EA).
Purpose of the Study:
- To evaluate vitamin D deficiency prevalence in children with IF after achieving EA.
- To identify clinical factors associated with vitamin D deficiency in this cohort.
Main Methods:
- Retrospective review of 29 children with IF who achieved EA.
- Vitamin D deficiency defined as mean serum 25-hydroxyvitamin D <30 ng/ml.
Main Results:
- 38% of children had mean vitamin D deficiency; 66% had at least one deficient level.
- 84% showed radiologic evidence of osteopenia.
- Deficient group had higher vitamin D doses, shorter remnant small-bowel length, and longer PN duration compared to sufficient group.
Conclusions:
- Vitamin D deficiency and osteopenia are highly prevalent in pediatric IF survivors with EA.
- Shorter remnant small-bowel length and longer PN duration correlate with vitamin D deficiency.
- Prolonged surveillance and alternative vitamin D dosing strategies are crucial.
Background:
Vitamin D deficiency is highly prevalent in children with intestinal failure (IF) who receive parenteral nutrition (PN), but data on vitamin D status after achieving enteral autonomy (EA) are limited. We aimed to evaluate the prevalence of vitamin D deficiency in this population while exploring clinical variables that may be associated with its development.
Methods:
A retrospective review was performed on 29 children with IF who had achieved EA. Deficiency was defined as a mean serum 25-hydroxyvitamin D <30 ng/ml.
Data Results:
Sixty-six percent of children had at least one deficient level during the study period, with 38% being deficient based on the mean vitamin D levels. Eighty-four percent had radiologic evidence of osteopenia. Compared with the sufficient group (n=18), the deficient group (n=11) received higher daily mean vitamin D doses (2246 vs 920 IU; P=.02), had shorter remnant small-bowel length (53.8 vs 82.1 cm; P=.03), and were PN dependent for a longer duration (1.3 vs 0.58 years; P=.01). Univariate analyses revealed longer remnant gut length (odds ratio [OR] = 1.03; P=.04) and shorter duration of PN (OR = 0.26; P=.04) to be significantly associated with sufficient vitamin D status.
Conclusion:
Vitamin D deficiency and osteopenia are highly prevalent in pediatric patients with a history of IF who have achieved EA, despite enteral supplementation with higher than standard doses. Shorter remnant small-bowel length and longer duration of PN were associated with vitamin D deficiency. These findings emphasize the importance of prolonged surveillance and highlight the need for alternate dosing regimens.
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