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Assessing the safety of an epiphyseal plate biopsy in a translational lamb model
Richard T Epperson1,2, Dustin L Williams1,2,3,4,5, Brady Rogers1,2
1Department of Orthopaedics, University of Utah, Salt Lake City, Utah, USA.
Insights
Epiphyseal plate biopsies in lambs showed no growth arrest or deformities. This research suggests biopsies are safe for early diagnosis and monitoring of pediatric bone conditions.
Area of Science:
- Orthopedics
- Pediatric Bone Health
- Skeletal Development
Background:
- Biopsies of the physis (growth plate) offer diagnostic potential for early detection and monitoring of pediatric bone conditions.
- Current practice avoids physeal biopsies due to concerns about causing growth arrest and deformities in children.
Purpose of the Study:
- To investigate the safety and effects of epiphyseal plate biopsies on bone growth and development.
- To determine if physeal biopsies lead to growth arrest or angular deformities in a pediatric animal model.
Main Methods:
- A 4.2 mm biopsy was performed on the proximal tibiae and distal femora physes of 3-month-old lambs.
- Lambs were monitored for 12 and 24 weeks post-biopsy.
- Computed tomography (CT), micro-CT, scanning electron microscopy (SEM), and histological analyses were used to assess growth and bone response, with contralateral limbs serving as controls.
Main Results:
- No angular deformities were observed following the 4.2 mm physeal biopsy.
- CT, SEM, and fluorochrome analyses confirmed ongoing bone growth and elongation, indicating the lambs were immature at the time of biopsy.
- Histological analysis revealed no adverse bone response to the biopsy procedure.
Conclusions:
- A small epiphyseal plate biopsy can be safely performed without causing growth arrest or angular deformities.
- This procedure holds promise for earlier diagnosis, treatment, and monitoring of diseased or damaged physes in pediatric patients.
- Physeal biopsy represents a potential advancement in managing pediatric skeletal conditions.
Abstract:
The literature demonstrates that obtaining a biopsy of the physis may be beneficial for diagnostic purposes. A small biopsy of the epiphyseal plate may allow for earlier detection of certain conditions and be used to monitor the healing of diseased and/or damaged physes. However, due to the fear of a growth arrest in a growing child, biopsies are not currently performed. In this study, we investigated the effects of a biopsy of the epiphyseal plate in 3-month-old lambs. A total of 4.2 mm biopsy samples were captured in the proximal tibiae and distal femora physes. The lambs were monitored 12- and 24-week post-biopsy. Computed tomography (CT) and micro-CT scans were obtained to determine if any angular deformities occurred, while scanning electron microscope (SEM) and histological analysis were utilized to assess the bone response due to the biopsy. The contralateral limbs served as unaltered controls for direct comparison within each lamb. The data demonstrated no signs of angular deformities following a 4.2 mm biopsy of the physis. Bone growth/elongation was confirmed by CT, SEM, and fluorochrome analyses and indicated that the lambs were in fact immature and still growing at the time of the biopsy. Clinical Significance: This investigation demonstrated that a small biopsy of the epiphyseal plate can be obtained safely without the cause of growth arrest and angular deformities. The ability to precisely diagnose, treat, and/or monitor at-risk children at an earlier timepoint by way of a biopsy sample could be an important advancement in regard to researching diseased and/or damaged physes.
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