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Vitamin D Deficiency-Induced Proximal Myopathy in a Pediatric Patient During COVID-19 Lockdown: A Case Report
Mohammad Hazique1, Arihant Surana2, Aashna Mehta3
1California Institute of Behavioral Neurosciences and Psychology, Fairfield, USA.
Insights
Severe vitamin D deficiency caused proximal myopathy in a child during COVID-19 lockdowns. Prompt supplementation and intensive physiotherapy led to full recovery, highlighting the importance of addressing vitamin D levels in pediatric muscle weakness.
Area of Science:
- Pediatric Endocrinology
- Nutritional Neuroscience
- Public Health
Background:
- Vitamin D deficiency is a global health issue impacting children's bone and muscle health.
- The COVID-19 pandemic exacerbated this problem due to reduced sunlight exposure from lockdowns.
Observation:
- A 13-year-old boy presented with severe proximal myopathy, including body aches, leg weakness, and difficulty walking.
- He had significantly low vitamin D (25[OH]D: 3.8 ng/ml), hypocalcemia, hypophosphatemia, and elevated parathyroid hormone and alkaline phosphatase.
Findings:
- Electromyography and nerve conduction studies were normal, ruling out primary neuromuscular disorders.
- The patient was diagnosed with vitamin D deficiency-induced proximal myopathy and osteomalacia.
- Treatment involved high-dose vitamin D, calcium, lifestyle changes, and intensive physiotherapy.
Implications:
- This case highlights the critical role of vitamin D in pediatric muscle function, especially during periods of limited sun exposure.
- A multidisciplinary approach combining nutritional support and tailored physiotherapy is crucial for managing and achieving full recovery from vitamin D deficiency myopathy in children.
- Pediatricians should consider vitamin D deficiency in children presenting with unexplained muscle weakness.
Abstract:
Vitamin D deficiency is a significant public health concern that affects bone health and muscle function in children, especially in developing countries. The COVID-19 pandemic has intensified this issue because lockdowns have reduced sunlight exposure. We report a rare case of a 13-year-old Indian boy who developed severe proximal myopathy induced by vitamin D deficiency during the pandemic. The patient presented with generalized body aches, progressive lower limb weakness, difficulty walking, waddling gait, and a positive Gower's sign. Laboratory tests revealed severe hypovitaminosis D (25[OH]D level, 3.8 ng/ml), hypocalcemia, hypophosphatemia, elevated parathyroid hormone, and elevated alkaline phosphatase levels. Electromyography and nerve conduction study results were normal. The patient was diagnosed with vitamin D deficiency-induced proximal myopathy and osteomalacia, likely due to reduced sunlight exposure, inadequate dietary intake, and obesity. The treatment involved high-dose vitamin D supplementation, oral calcium, lifestyle modifications, and a structured physiotherapy program focusing on resistance training and functional mobility exercises. Despite biochemical normalization after 2 months, significant symptomatic improvement was achieved only after intensifying physiotherapy. By 7 months, the patient had fully recovered muscle strength, achieved normal gait, and maintained normal follow-up laboratory values. This case emphasizes the importance of considering vitamin D deficiency in children with muscle weakness during periods of limited sunlight exposure, and highlights the need for a multidisciplinary approach for effective management and full functional recovery.
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