Mechanical Characteristics of Individualized Biodegradable Augmentation Scaffold-In Vitro Pilot Study
The alveolar ridge reconstruction of vertical and combined bone defects is a non-predictable procedure with varying percentages of success. The greatest challenge for vertical and combined bone augmentation is to maintain mechanical stability of the bone graft; therefore, it is mandatory to provide...
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Published in: | Materials Vol. 17; no. 6; p. 1419 |
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Abstract | The alveolar ridge reconstruction of vertical and combined bone defects is a non-predictable procedure with varying percentages of success. The greatest challenge for vertical and combined bone augmentation is to maintain mechanical stability of the bone graft; therefore, it is mandatory to provide and preserve space for bone regeneration. The development of biomaterials and 3D printing has enabled the use of polymer scaffolds in the reconstruction of alveolar ridge defects. The aim of this pilot study was to evaluate the mechanical characteristics of an innovative individualized biodegradable polylactic acid (PLA) scaffold, under dynamic conditions, simulating biodegradation and the influence of masticatory forces. After the design and 3D printing of PLA scaffolds, two groups of 27 scaffolds were formed according to the compression testing procedure. The compression tests were performed in occlusal and lateral directions. In each of the two groups, nine subgroups of three scaffolds were formed for different testing periods during in vitro degradation with a total period of 16 weeks. Results showed that biodegradation and load application had no significant influence on mechanical characteristics of tested scaffolds. It can be concluded that simulated masticatory forces and biodegradation do not significantly influence the mechanical characteristics of an individualized biodegradable augmentation scaffold. |
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AbstractList | The alveolar ridge reconstruction of vertical and combined bone defects is a non-predictable procedure with varying percentages of success. The greatest challenge for vertical and combined bone augmentation is to maintain mechanical stability of the bone graft; therefore, it is mandatory to provide and preserve space for bone regeneration. The development of biomaterials and 3D printing has enabled the use of polymer scaffolds in the reconstruction of alveolar ridge defects. The aim of this pilot study was to evaluate the mechanical characteristics of an innovative individualized biodegradable polylactic acid (PLA) scaffold, under dynamic conditions, simulating biodegradation and the influence of masticatory forces. After the design and 3D printing of PLA scaffolds, two groups of 27 scaffolds were formed according to the compression testing procedure. The compression tests were performed in occlusal and lateral directions. In each of the two groups, nine subgroups of three scaffolds were formed for different testing periods during in vitro degradation with a total period of 16 weeks. Results showed that biodegradation and load application had no significant influence on mechanical characteristics of tested scaffolds. It can be concluded that simulated masticatory forces and biodegradation do not significantly influence the mechanical characteristics of an individualized biodegradable augmentation scaffold. |
Audience | Academic |
Author | Bjelica, Roko Drvar, Nenad Prpić, Vladimir Gabrić, Dragana Ćatić, Amir |
AuthorAffiliation | 2 Department of Fixed Prosthodontics, School of Dental Medicine, University of Zagreb, 10000 Zagreb, Croatia; vprpic@sfzg.hr (V.P.); catic@sfzg.hr (A.Ć.) 1 Department of Oral Surgery, School of Dental Medicine, University of Zagreb, 10000 Zagreb, Croatia; rbjelica@sfzg.hr 4 University Dental Clinic, University Hospital Centre Zagreb, 10000 Zagreb, Croatia 3 Topomatika, LLC, 10431 Sveta Nedelja, Croatia; n.drvar@topomatika.hr |
AuthorAffiliation_xml | – name: 3 Topomatika, LLC, 10431 Sveta Nedelja, Croatia; n.drvar@topomatika.hr – name: 1 Department of Oral Surgery, School of Dental Medicine, University of Zagreb, 10000 Zagreb, Croatia; rbjelica@sfzg.hr – name: 4 University Dental Clinic, University Hospital Centre Zagreb, 10000 Zagreb, Croatia – name: 2 Department of Fixed Prosthodontics, School of Dental Medicine, University of Zagreb, 10000 Zagreb, Croatia; vprpic@sfzg.hr (V.P.); catic@sfzg.hr (A.Ć.) |
Author_xml | – sequence: 1 givenname: Roko orcidid: 0000-0002-7092-8045 surname: Bjelica fullname: Bjelica, Roko organization: Department of Oral Surgery, School of Dental Medicine, University of Zagreb, 10000 Zagreb, Croatia – sequence: 2 givenname: Vladimir orcidid: 0000-0001-6058-1503 surname: Prpić fullname: Prpić, Vladimir organization: Department of Fixed Prosthodontics, School of Dental Medicine, University of Zagreb, 10000 Zagreb, Croatia – sequence: 3 givenname: Nenad surname: Drvar fullname: Drvar, Nenad organization: Topomatika, LLC, 10431 Sveta Nedelja, Croatia – sequence: 4 givenname: Amir orcidid: 0000-0002-9332-5423 surname: Ćatić fullname: Ćatić, Amir organization: University Dental Clinic, University Hospital Centre Zagreb, 10000 Zagreb, Croatia – sequence: 5 givenname: Dragana orcidid: 0000-0003-0213-1170 surname: Gabrić fullname: Gabrić, Dragana organization: University Dental Clinic, University Hospital Centre Zagreb, 10000 Zagreb, Croatia |
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Keywords | bone regeneration three dimensional polymers alveolar ridge augmentation printing |
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SubjectTerms | 3D printing Biodegradation Biological products Biomedical materials Biopolymers Compression tests Computer hardware industry Computer industry Defects Dental implants Dentistry Design Finite element analysis Geometry Grafting International economic relations Load Mastication Mechanical properties Membranes Pilot projects Polylactic acid Polymers Reconstruction Regeneration (physiology) Scaffolds Skin & tissue grafts Software Subgroups Substitute bone Surgery Test procedures Three dimensional printing Titanium |
Title | Mechanical Characteristics of Individualized Biodegradable Augmentation Scaffold-In Vitro Pilot Study |
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