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Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Long-term outcome in children with nutritional vitamin B12 deficiency
Melike Sezgin Evim1, Şahin Erdöl, Özlem Özdemir
1Department of Pediatric Hematology, Faculty of Medicine, Uludağ University, Bursa, Turkey Phone: +90 224 295 05 47
Insights
Vitamin B12 deficiency in children can lead to hematologic and neurologic issues. While treatment resolves most symptoms, long-term follow-up is crucial as some neurological deficits may persist.
Area of Science:
- Pediatrics
- Neurology
- Hematology
Background:
- Vitamin B12 deficiency is a significant health concern in developing nations, affecting children's growth and development.
- Clinical presentation varies, encompassing weakness, failure to thrive, and hematologic abnormalities.
Purpose of the Study:
- To evaluate the long-term clinical and laboratory outcomes of vitamin B12 deficiency in pediatric patients.
- To assess the impact of vitamin B12 replacement therapy on neurological and hematological parameters.
Main Methods:
- Retrospective analysis of 45 children with vitamin B12 deficiency.
- Clinical assessment, complete blood count, serum vitamin B12, folate, iron studies, and homocysteine levels.
- Neurological evaluation using Visual Evoked Potentials (VEP), Brainstem Auditory Evoked Potentials (BAEP), and Denver II Development Screening Test post-treatment.
Main Results:
- Hematologic recovery was achieved within one month of treatment.
- Neurological symptoms improved, but persistent abnormalities were noted in 17-37% of patients.
- Abnormalities included prolonged VEP and BAEP intervals and developmental delays.
Conclusions:
- Vitamin B12 replacement therapy effectively restores hematologic parameters in children.
- Despite initial recovery, a subset of patients exhibits persistent neurological deficits, highlighting the need for long-term monitoring.
- Continued clinical and neurophysiological follow-up is essential for managing vitamin B12 deficiency in children.
Objective:
Vitamin B12 deficiency is frequently observed in developing countries. Herein we report the long-term clinical and laboratory outcomes in 45 children presented with various symptoms of vitamin B12 deficiency.
Methods:
Symptoms and physical findings, and percentiles for weight, height, and head circumference at presentation were recorded. The educational level of the patients' mothers, vitamin B12 deficiency-related diseases and family income data were collected. Complete blood count, serum vitamin B12, folate, iron, iron binding capacity and ferritin, and plasma homocysteine levels were recorded measured at presentation. The patients were treated with vitamin B12, as follows: 1 mg/d IM for 1 week, followed by 1 mg IM QWK for 2 weeks, and then monthly 1mg injections. Patients were neurologically and hematologically re-evaluated after treatment. The visual evoked potential (VEP) test was used to examine the integrity and function of the visual pathway. Brainstem evoked potential (BAEP) responses were used to analyze auditory function. Neuromotor development was assessed using Denver II Development Screening Test.
Results:
The mean age of 20 male and 25 female patients was 5.6±5.9 years (range: 1.4 months-17 years). The most common symptoms at presentation were weakness, failure to thrive, and hematologic manifestations (pallor, petechiae, ecchymosis). Abnormal neurologic findings at presentation were observed in 20% of the patients, and were more commonly observed in those <2 years. VEP, BAEP, and Denver II Development tests were performed in 66% of the patients one year after vitamin B12 replacement was started. VEP and BAEP interval prolongation was observed in 37% and 17% of the cases, respectively. Denver II Development Test results showed developmental delay in 20% of the patients tested.
Conclusion:
All the patients achieved full hematologic recovery within 1 month of treatment onset. Neurological symptoms resolved following B12 administration; however, during long-term follow-up ranged from 17% to 37% of the tested patients had persistent VEP; BERA, and Denver II abnormalities. Neurological symptoms resolved following B12 administration; however, during long-term followup 33% of the patients had persistent VEP, BERA, and Denver II abnormalities. As such, clinicians should continue to follow-up such patients even after hematologic and clinical improvement are obtained in order to assess their neurologic status.
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