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Background: Three-dimensional printed bioceramic scaffolds composed of 100% β-tricalcium phosphate augmented with dipyridamole (3DPBC-DIPY) can regenerate bone across critically sized defects in skeletally mature and immature animal models. Before human application, safe and effective bone formation should be demonstrated in a large translational animal model. This study evaluated the ability of 3DPBC-DIPY scaffolds to restore critically sized calvarial defects in a skeletally immature, growing minipig.
Methods: Unilateral calvarial defects (~1.4 cm) were created in 6-week-old Göttingen minipigs ( n = 12). Four defects were filled with a 1000 μm 3DPBC-DIPY scaffold with a cap (a solid barrier on the ectocortical side of the scaffold to prevent soft-tissue infiltration), four defects were filled with a 1000 μm 3DPBC-DIPY scaffold without a cap, and four defects served as negative controls (no scaffold). Animals were euthanized 12 weeks postoperatively. Calvariae were subjected to micro-computed tomography, 3D reconstruction with volumetric analysis, qualitative histologic analysis, and nanoindentation.
Results: Scaffold-induced bone growth was statistically greater than in negative controls ( P ≤ 0.001), and the scaffolds with caps produced significantly more bone generation compared with the scaffolds without caps ( P ≤ 0.001). Histologic analysis revealed woven and lamellar bone with haversian canals throughout the regenerated bone. Cranial sutures were observed to be patent, and there was no evidence of ectopic bone formation or excess inflammatory response. Reduced elastic modulus and hardness of scaffold-regenerated bone were found to be statistically equivalent to native bone ( P = 0.148 for reduced elastic modulus of scaffolds with and without caps and P = 0.228 and P = 0.902 for hardness of scaffolds with and without caps, respectively).
Conclusion: 3DPBC-DIPY scaffolds have the capacity to regenerate bone across critically sized calvarial defects in a skeletally immature translational pig model.
Clinical Relevance Statement: This study assessed the bone generative capacity of 3D-printed bioceramic scaffolds composed of 100% β-tricalcium phosphate and augmented with dipyridamole placed within critical-sized calvarial defects in a growing porcine model.
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http://dx.doi.org/10.1097/PRS.0000000000010258 | DOI Listing |
Chondral and osteochondral lesions of the knee in skeletally immature patients, can result in serious long-term sequelae, such as early knee arthrosis. While there is an abundance of studies concerning chondral repair techniques, there have been relatively few studies that have examined outcomes following cartilage repair in skeletally immature patients. Therefore, we planned to answer the following question: does the AMIC® technique result in positive outcomes for the repair of cartilage lesions in the knee in adolescent patients ? Our hypothesis was that the AMIC® technique improves outcomes for skeletally immature patients with an ICRS stage III or IV osteochondral lesion two year after the surgery.
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August 2025
Department of Orthopaedic Surgery, The University of Tokyo Hospital, Tokyo, Japan.
Aims: Extendable endoprostheses are utilized to reconstruct segmental defects following resection of bone sarcomas in skeletally immature children. However, there remains a paucity of data regarding long-term functional and quality of life outcomes.
Methods: We conducted a retrospective, multicentre study and reviewed 45 children who underwent cementless minimally invasive extendable endoprosthetic replacement.
J Am Acad Orthop Surg
July 2025
From the Department of Orthopaedic Surgery (Ina, Soma, Camp, and Pulos) and the Department of Pediatric and Adolescent Medicine (Soma), Mayo Clinic, Rochester, MN.
Increased participation in youth sports has led to a corresponding increase in throwing-related injuries among skeletally immature athletes. These injuries often stem from overuse and can in part be attributed to sport specialization leading to year-round sport participation without adequate rest and an increase in volume of practices and games during the season. Injuries that occur in skeletally immature athletes can be unique to this population due to the vulnerability of the open growth plates.
View Article and Find Full Text PDFBone Joint Res
June 2025
Extremity Trauma and Amputation Center of Excellence, Defense Health Agency, Falls Church, Virginia, USA.
Aims: Open fractures pose a substantial treatment challenge, with adjacent muscle loss being a major complication. The induced membrane (IM) technique has shown promise in treating complicated fractures. The aim of this study is to investigate the impact of adjacent muscle trauma on segmental fracture healing using recombinant human bone morphogenetic protein-2 (rhBMP-2) via the IM technique.
View Article and Find Full Text PDFJ Orthop Surg Res
June 2025
Department of Orthopedic Surgery, Eunpyeong St. Mary's Hospital, College of Medicine, The Catholic University of Korea, 1021, Tongil-ro, Eunpyeong-gu, Seoul, 03321, Republic of Korea.
Background: Moldable calcium phosphate (MCaP) biomaterials have been studied as osteoconductive scaffolds for bone regeneration. However, their potential as carriers for recombinant human bone morphogenetic protein-2 (rhBMP-2) and the biological impact of varying rhBMP-2 doses remain to be fully validated. This study aimed to evaluate the efficacy and safety of MCaP alone and in combination with rhBMP-2 in a rabbit metaphyseal bone defect model.
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