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Impact of Intramedullary Implants on Metallic Element Homeostasis in Children with Forearm Fractures
Kacper Sowa1, Anna Danielewicz1, Magdalena Wójciak2
1Department of Paediatric Orthopaedics, Medical University of Lublin, 20-059 Lublin, Poland.
Insights
Elastic stable intramedullary nailing (ESIN) for pediatric forearm fractures showed no significant changes in major mineral levels. A slight increase in blood titanium was observed, indicating implant exposure rather than toxicity.
Area of Science:
- Orthopedic Surgery
- Pediatric Traumatology
- Biomaterials Science
Background:
- Musculoskeletal injuries are common in children, with fractures frequently requiring surgical intervention.
- Elastic stable intramedullary nailing (ESIN) is a common method for stabilizing pediatric long-bone fractures, enabling early mobilization.
- Concerns exist regarding potential metal ion release from ESIN implants in growing children.
Purpose of the Study:
- To evaluate changes in blood and medullary cavity concentrations of calcium, magnesium, copper, zinc, titanium, and aluminum following ESIN.
- To assess the systemic impact of intramedullary fixation on mineral homeostasis in pediatric patients.
Main Methods:
- Prospective study of 40 pediatric patients (4-15 years) treated with ESIN for forearm fractures.
- Collection of peripheral blood and medullary cavity samples pre-implantation and at implant removal.
- Elemental analysis using high-resolution ICP-OES with statistical comparisons.
Main Results:
- No significant systemic alterations in calcium, magnesium, copper, zinc, or aluminum levels were detected.
- A statistically significant, albeit modest, increase in blood titanium levels was observed post-treatment (p=0.0075), particularly with dual-rod fixation.
- Multivariate analysis indicated overall elemental profile stability, with titanium being the primary contributor to post-treatment variation.
Conclusions:
- Pediatric intramedullary titanium fixation via ESIN does not substantially disrupt systemic mineral homeostasis.
- The observed rise in circulating titanium is attributed to implant exposure, not toxicity, supporting ESIN safety.
- Continued monitoring of metallic elements in patients undergoing ESIN may be advisable.
Abstract:
Background/Objectives: Childhood is marked by frequent musculoskeletal injuries, with fractures representing a major cause of pediatric trauma admissions. Unstable long-bone fractures often require surgical stabilization, commonly achieved using elastic stable intramedullary nailing (ESIN). Although this method ensures effective fixation and early mobilization, concerns remain regarding potential metal ion release in growing children. This study aimed to assess changes in calcium, magnesium, copper, zinc, titanium, and aluminum concentrations in blood and material from the medullary cavity of forearm fractures following intramedullary fixation. Methods: A prospective study was conducted on 40 patients aged 4-15 years treated with ESIN at the University Children's Hospital in Lublin. Peripheral blood and material from the medullary cavity were collected before implantation and at implant removal. Elemental concentrations were determined using high-resolution ICP-OES, and statistical analyses included paired comparisons, delta values, and multivariate methods. Results: No significant systemic changes were found for calcium, magnesium, copper, zinc, or aluminum. A modest but significant increase in blood titanium levels was observed after treatment (p = 0.0075), especially in patients with two rods. Multivariate analysis confirmed overall stability of elemental profiles, with titanium contributing most strongly to post-treatment variation. Conclusions: Intramedullary titanium fixation in children does not significantly disrupt systemic mineral homeostasis. The slight increase in circulating titanium reflects implant exposure rather than toxicity, supporting the safety of ESIN, although continued monitoring of metallic elements may be warranted.

