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Updated: Jul 4, 2026

Direct and Indirect Culture Methods for Studying Biodegradable Implant Materials In Vitro
Published on: April 15, 2022
Biodegradation of Inion fast-absorbing biodegradable plates and screws
H Wolfgang Losken1, John A van Aalst, Mark P Mooney
1Division of Plastic and Reconstructive Surgery, University of North Carolina at Chapel Hill, North Carolina 27599-7195, USA. wolfdaisy@loskens.com
Insights
Biodegradable plates and screws for pediatric craniofacial surgery showed effective biodegradation within 9 months in a rabbit model. These implants demonstrated safe resorption with normal inflammatory responses, suggesting suitability for children's skeletal repair.
Area of Science:
- Biomaterials Science
- Pediatric Craniofacial Surgery
- Surgical Implant Biodegradation
Background:
- Biodegradable plates and screws are crucial for pediatric craniofacial surgery, requiring timely biodegradation (within 1 year) to avoid hindering skull growth.
- Minimizing foreign body reactions and cyst formation during biodegradation is essential for patient safety.
Purpose of the Study:
- To evaluate the biodegradation rate of Inion CPS Baby biodegradable plates and screws in a rabbit craniofacial model.
- To assess the efficacy and foreign body reaction of these implants for pediatric craniofacial surgery.
Main Methods:
- Inion baby plates and screws were implanted in rabbit craniofacial sites (frontal, parietal, nasal, occipital).
- Thirty rabbits were examined at 9, 12, 15, and 18 months post-surgery.
- Histological analysis (hematoxylin and eosin staining) assessed implant residue, bone healing, and inflammatory response.
Main Results:
- Plates and screws achieved effective biodegradation and loss of holding power by 9 months, with noted fragmentation.
- Residual implant material was observed histologically up to 18 months, with one palpable screw residue at 18 months.
- No cyst formation occurred; macrophages and giant cells indicated a normal inflammatory response.
Conclusions:
- The Inion CPS Baby biodegradable implants exhibit a rapid resorption time of approximately 9 months in rabbits.
- The observed inflammatory sequelae were normal, supporting the safety and efficacy of these implants for pediatric craniofacial applications.
Abstract:
Biodegradable plates and screws are recommended for use in surgery of the craniofacial skeleton of children. To be effective and not interfere with growth of the child's skull, the plates must biodegrade sufficiently to release the holding power of the plate and screw within 1 year. It is also essential that excessive foreign body reaction and cyst formation does not occur when the plates and screws biodegrade. The purpose of this experimental study was to evaluate the rate of biodegradation of Inion CPS Baby biodegradable plates and screws under different clinical circumstances in the rabbit craniofacial skeleton and evaluate their efficacy for use in pediatric craniofacial surgery. Foreign body reaction would be evaluated. Inion baby plates and screws were tested in a rabbit model. Plates were applied to the frontal bone, over a bony defect of the parietal bone, to a nasal bone fracture, and inserted in the subcutaneous space over the occipital bone in thirty 6-week-old rabbits. Six rabbits were euthanized at 9, 12, 15, and 18 months' postoperative time point and examined for residual plates and screws. Bone from each surgical site was excised, fixed by immersion in 10% neutral-buffered formalin, decalcified in Immunocal solution, and examined by 7-microm paraffin sections stained with hematoxylin and eosin. At 9 months, the plates and screws had effectively biodegraded and no longer had holding power on the bones. Fragmentation of the implant material was noted. Residual implant material was still present on gross and histologic examination in rabbits at 9, 12, 15, and 18 months. Residue of a screw was still palpable in 1 rabbit at 18 months. There was no evidence of cyst formation in any of the examined specimens. Macrophages and giant cells were present in most of the specimens at 9, 12, 15, and 18 months. Findings from the current study revealed a relative short resorption time (9 mo) and normal inflammatory sequelae in an adult rabbit model. These findings suggest that these plates may be used safely in fixing the pediatric craniofacial skeleton.
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