Related Experiment Video
Updated: May 22, 2026

3D Planning and Printing of Patient Specific Implants for Reconstruction of Bony Defects
Published on: August 4, 2020
Application of Patient-Specific PCL/βTCP Scaffolds for Reconstruction of Maxillomandibular Bone Defects: A Case
Hekmat Farajpour1,2, Helia Sadat Haeri Boroojeni3, Sadra Mohaghegh3
1Deparment of Artificial Intelligence, Smart University of Medical Sciences, Tehran, Iran, smums.ac.ir.
Aim:
This case series study was aimed at reporting reconstruction of maxillomandibular large bone defects using patient-specific polycaprolactone/β-tricalcium phosphate (PCL/βTCP) scaffolds.
Material And Method:
In three patients who underwent mandibular segmental resection, scaffolds were implanted to augment load-bearing areas while preserving the inferior alveolar neurovascular bundle continuity (functional bone replacement). In two other patients, PCL/TCP scaffolds were implanted in non-load-bearing areas to separate anatomic spaces (anatomic bone replacement). One anatomic scaffold was used as a covering membrane in posterior mandible atrophic ridge augmentation, and another was used to separate the orbital cavity from the antrum. Each patient underwent computed tomography (CT) scans before surgery and at the end of the follow-up period. Histological analyses were performed on biopsy samples collected from those who underwent placement of dental implants.
Results:
Radiologic analyses showed 30%-75% new bone formation in functional bone replacement. A proper bony border was created following anatomic bone replacement. Minor graft exposure and inflammation were observed in three patients. Histological analyses revealed proper scaffold degradation and bone formation.
Conclusion:
Given the overall clinical complications in our study, PCL/βTCP patient-specific scaffolds can be potential treatment options in selected cases. However, further studies are warranted.

