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Published on: January 3, 2017
Nutritional and safety outcomes from an open-label micronutrient intervention for pediatric bipolar spectrum
Elisabeth A Frazier1, Barbara Gracious, L Eugene Arnold
1Department of Psychiatry, Department of Human Nutrition, The Ohio State University , Columbus, Ohio.
Insights
This pilot study found that the multinutrient supplement EMPowerplus (EMP+) was safe and well-tolerated in children with pediatric bipolar spectrum disorders (BPSD). Supplementation increased serum vitamin levels, suggesting a potential therapeutic benefit for BPSD.
Area of Science:
- Nutritional Psychiatry
- Pediatric Psychiatry
- Clinical Nutrition
Background:
- Pediatric bipolar spectrum disorders (BPSD) present significant challenges in treatment.
- Current psychotropic medications have limitations in safety and tolerability.
- Micronutrient supplementation offers a potential alternative or adjunctive therapy.
Purpose of the Study:
- To assess the safety and tolerability of EMPowerplus (EMP+), a 36-ingredient multinutrient supplement, in children with BPSD.
- To evaluate changes in serum micronutrient concentrations.
- To explore correlations between micronutrient levels and mood changes over an 8-week period.
Main Methods:
- An 8-week open-label pilot feasibility study involving 10 children (ages 6-12) with BPSD.
- Participants received EMP+ with dose escalation.
- Outcome measures included serum/red blood cell micronutrient levels, vital signs, BMI, dietary intake, and mood/functioning ratings.
Main Results:
- Seven children (70%) completed the study; adverse effects were mild and transient (e.g., insomnia, GI upset).
- No significant changes in BMI or waist-hip ratio were observed.
- Serum concentrations of vitamins A, B6, E, and folate increased significantly (p<0.05); vitamin D approached significance (p=0.063).
- Dietary intake remained stable, indicating EMP+ as the source of increased nutrient levels.
Conclusions:
- Short-term use of EMP+ in children with BPSD demonstrated good safety and tolerability.
- The side effect profile appears more favorable than first-line psychotropic drugs.
- A double-blind, randomized clinical trial is warranted due to positive clinical outcomes and documented increases in serum micronutrient concentrations.
Objective:
The purpose of this study was to report the safety, tolerability, and serum micronutrient concentrations and their correlations with mood changes from an 8 week pilot feasibility study of a 36 ingredient multinutrient supplement, EMPowerplus (EMP+), for pediatric bipolar spectrum disorders (BPSD).
Methods:
Ten children ages 6-12 received EMP+ escalating from one to four capsules t.i.d., with four children increased to the maximum suggested dose, five capsules t.i.d. Outcome measures were micronutrient concentrations in serum and red blood cells, vital signs, body mass index (BMI), dietary intake (Food Frequency Questionnaire and 24 hour dietary recall interview), and mood and global functioning ratings.
Results:
Seven children (70%) completed the study. Three (30%) terminated early for tolerability and compliance issues. Adverse effects were mild and transient, and chiefly consisted of initial insomnia or gastrointestinal (GI) upset. No differences occurred in BMI (p = 0.310) or waist-hip ratio (WHR; p = 0.674) pre- to postsupplementation. Four of the tested serum vitamin concentrations increased from pre- to postsupplementation: vitamin A-retinol, vitamin B6, vitamin E-α-tocopherol; and folate (all p<0.05). The increase in serum 25-OH vitamin D approached significance (p = 0.063). No differences were found in dietary intake pre- to postsupplementation, suggesting that blood nutrient level increases were caused by EMP+.
Conclusions:
In this open prospective study, short-term use of EMP+ in children with BPSD appeared safe and well-tolerated, with a side effect profile preferable to first-line psychotropic drugs for pediatric bipolar spectrum disorders. A double-blind, randomized clinical trial is feasible, appears safe, and is warranted by open-label clinical outcomes and plausible mechanisms of action, combined with documentation of increased serum concentrations of specific micronutrients.
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