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Metabolic Side Effects of Risperidone in Pediatric Patients with Neurological Disorders: A Prospective Cohort Study
Jawza F Alsabhan1, Nouf Backer Al Backer2, Fatimah M Hassan1
1Department of Clinical Pharmacy, College of Pharmacy, King Saud University, Riyadh 11322, Saudi Arabia.
Insights
Risperidone use in children with neurological disorders can cause metabolic side effects like hyperlipidemia. Close monitoring of metabolic indicators and individualized treatment plans are crucial for managing these risks.
Area of Science:
- Pediatric Endocrinology
- Neuropharmacology
- Metabolic Disorders
Background:
- Metabolic side effects of risperidone in children are a concern.
- Variations in treatment protocols may influence these effects.
- Understanding risperidone's impact on pediatric metabolic health is essential.
Purpose of the Study:
- To explore the metabolic effects of risperidone in pediatric patients with neurological disorders.
- To evaluate risperidone's influence on key metabolic indicators.
- To assess the incidence of metabolic side effects in this population.
Main Methods:
- Prospective cohort study utilizing electronic health records and clinical data.
- Inclusion of patient demographics, risperidone dosage, and treatment duration.
- Baseline and follow-up laboratory tests for metabolic markers.
Main Results:
- 52 children with neurological disorders were analyzed; 53.8% experienced metabolic side effects.
- Hyperlipidemia was the most frequent side effect (34.6%).
- Slight increase in median prolactin levels observed; no significant associations with age, sex, or treatment duration for HbA1c.
Conclusions:
- Routine monitoring of metabolic and anthropometric parameters is vital for children on risperidone.
- Individualized treatment strategies and close monitoring are recommended.
- Addressing potential long-term risks of risperidone in this population is critical.
Abstract:
Background/Objectives: Risperidone-related metabolic side effects in children have been primarily linked to variations between guideline-recommended and clinical treatment procedures. We explored the metabolic effects of risperidone administration in pediatric patients diagnosed with neurological disorders, thus evaluating its influence on metabolic indicators. Methods: This prospective cohort study gathered data from electronic health records, medical databases, and clinical reports. These data included patient demographics (e.g., age, sex, and body mass index) and information on risperidone use, including dosage, dosing frequency, and treatment duration. Additionally, laboratory tests were conducted at baseline and during treatment, along with other pertinent clinical variables. Result: A total of 52 eligible children (male; 73.1%) with neurological disorders treated with risperidone were included. The mean age was 13.4 ± 2.2 years. Risperidone was administered to 32.7% of patients for <2 years, 40.4% for 2-5 years, and 26.9% for 6-9 years, with a mean duration of 3.6 years. Most (53.8%) of the children experienced at least one metabolic side effect, with hyperlipidemia being the most common (34.6%). The median prolactin level increased slightly from 448.5 ng/mL at baseline to 479 ng/mL after 6-8 weeks. No significant associations were found between age, sex, duration of treatment, dosage form, dosing frequency, and hemoglobin A1c levels. Conclusion: Monitoring metabolic and anthropometric parameters in children receiving risperidone for neurological disorders is cardinal. Clinicians should consider individualized treatment plans, closely monitor metabolic markers, and address potential risks associated with long-term risperidone use in this vulnerable population.
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