Making bone: implant insertion into tissue-engineered bone for maxillary sinus floor augmentation-a preliminary report.
Identifieur interne : 002F93 ( PubMed/Curation ); précédent : 002F92; suivant : 002F94Making bone: implant insertion into tissue-engineered bone for maxillary sinus floor augmentation-a preliminary report.
Auteurs : Rainer Schmelzeisen [Allemagne] ; Ronald Schimming ; Michael SittingerSource :
- Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery [ 1010-5182 ] ; 2003.
Descripteurs français
- KwdFr :
- Adulte d'âge moyen, Cyanoacrylates, Humains, Ingénierie tissulaire (), Mandibule (cytologie), Matériaux biocompatibles, Maxillaire (), Mâchoire partiellement édentée (), Numération cellulaire, Ostéoblastes (cytologie), Ostéoblastes (physiologie), Ostéocytes (cytologie), Ostéogenèse, Pose d'implant dentaire endo-osseux, Projets pilotes, Périoste (cytologie), Périoste (physiologie), Reconstruction de crête alvéolaire (), Sinus maxillaire (), Techniques de culture cellulaire, Trame osseuse (cytologie), Trame osseuse (physiologie), Transplantation osseuse ().
- MESH :
- cytologie : Mandibule, Ostéoblastes, Ostéocytes, Périoste, Trame osseuse.
- physiologie : Ostéoblastes, Périoste, Trame osseuse.
- Adulte d'âge moyen, Cyanoacrylates, Humains, Ingénierie tissulaire, Matériaux biocompatibles, Maxillaire, Mâchoire partiellement édentée, Numération cellulaire, Ostéogenèse, Pose d'implant dentaire endo-osseux, Projets pilotes, Reconstruction de crête alvéolaire, Sinus maxillaire, Techniques de culture cellulaire, Transplantation osseuse.
English descriptors
- KwdEn :
- Alveolar Ridge Augmentation (methods), Biocompatible Materials, Bone Matrix (cytology), Bone Matrix (physiology), Bone Transplantation (methods), Cell Count, Cell Culture Techniques, Cyanoacrylates, Dental Implantation, Endosseous, Humans, Jaw, Edentulous, Partially (surgery), Mandible (cytology), Maxilla (surgery), Maxillary Sinus (surgery), Middle Aged, Osteoblasts (cytology), Osteoblasts (physiology), Osteocytes (cytology), Osteogenesis, Periosteum (cytology), Periosteum (physiology), Pilot Projects, Tissue Engineering (methods).
- MESH :
- chemical : Biocompatible Materials, Cyanoacrylates.
- cytology : Bone Matrix, Mandible, Osteoblasts, Osteocytes, Periosteum.
- methods : Alveolar Ridge Augmentation, Bone Transplantation, Tissue Engineering.
- physiology : Bone Matrix, Osteoblasts, Periosteum.
- surgery : Jaw, Edentulous, Partially, Maxilla, Maxillary Sinus.
- Cell Count, Cell Culture Techniques, Dental Implantation, Endosseous, Humans, Middle Aged, Osteogenesis, Pilot Projects.
Abstract
Autologous, allogenic and alloplastic materials for bony reconstruction in the cranio-maxillofacial area have many drawbacks thus stimulating the on-going search for new (bio-)materials. Whereas cultivated skin and mucosa are already in clinical routine use in head and neck reconstruction, so far there has been no successful clinical application to the best of our knowledge of periosteum-derived, tissue-engineered bone for augmentation of the edentulous posterior maxilla. In a pilot study, augmentation of the posterior maxilla was carried out using a bone matrix derived from mandibular periosteal cells on a polymer fleece. This paper demonstrates fabrication of the matrix, clinical application, and the histological results in two patients. The results suggest that periosteum-derived osteoblasts on a suitable matrix form lamellar bone within 4 months which allows reliable implant insertion.
PubMed: 12553924
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pubmed:12553924Le document en format XML
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<term>Bone Matrix (cytology)</term>
<term>Bone Matrix (physiology)</term>
<term>Bone Transplantation (methods)</term>
<term>Cell Count</term>
<term>Cell Culture Techniques</term>
<term>Cyanoacrylates</term>
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<term>Périoste (physiologie)</term>
<term>Reconstruction de crête alvéolaire ()</term>
<term>Sinus maxillaire ()</term>
<term>Techniques de culture cellulaire</term>
<term>Trame osseuse (cytologie)</term>
<term>Trame osseuse (physiologie)</term>
<term>Transplantation osseuse ()</term>
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<keywords scheme="MESH" type="chemical" xml:lang="en"><term>Biocompatible Materials</term>
<term>Cyanoacrylates</term>
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<term>Ostéoblastes</term>
<term>Ostéocytes</term>
<term>Périoste</term>
<term>Trame osseuse</term>
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<keywords scheme="MESH" qualifier="cytology" xml:lang="en"><term>Bone Matrix</term>
<term>Mandible</term>
<term>Osteoblasts</term>
<term>Osteocytes</term>
<term>Periosteum</term>
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<keywords scheme="MESH" qualifier="methods" xml:lang="en"><term>Alveolar Ridge Augmentation</term>
<term>Bone Transplantation</term>
<term>Tissue Engineering</term>
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<keywords scheme="MESH" qualifier="physiology" xml:lang="en"><term>Bone Matrix</term>
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<term>Periosteum</term>
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<keywords scheme="MESH" qualifier="surgery" xml:lang="en"><term>Jaw, Edentulous, Partially</term>
<term>Maxilla</term>
<term>Maxillary Sinus</term>
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<keywords scheme="MESH" xml:lang="en"><term>Cell Count</term>
<term>Cell Culture Techniques</term>
<term>Dental Implantation, Endosseous</term>
<term>Humans</term>
<term>Middle Aged</term>
<term>Osteogenesis</term>
<term>Pilot Projects</term>
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<term>Cyanoacrylates</term>
<term>Humains</term>
<term>Ingénierie tissulaire</term>
<term>Matériaux biocompatibles</term>
<term>Maxillaire</term>
<term>Mâchoire partiellement édentée</term>
<term>Numération cellulaire</term>
<term>Ostéogenèse</term>
<term>Pose d'implant dentaire endo-osseux</term>
<term>Projets pilotes</term>
<term>Reconstruction de crête alvéolaire</term>
<term>Sinus maxillaire</term>
<term>Techniques de culture cellulaire</term>
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<front><div type="abstract" xml:lang="en">Autologous, allogenic and alloplastic materials for bony reconstruction in the cranio-maxillofacial area have many drawbacks thus stimulating the on-going search for new (bio-)materials. Whereas cultivated skin and mucosa are already in clinical routine use in head and neck reconstruction, so far there has been no successful clinical application to the best of our knowledge of periosteum-derived, tissue-engineered bone for augmentation of the edentulous posterior maxilla. In a pilot study, augmentation of the posterior maxilla was carried out using a bone matrix derived from mandibular periosteal cells on a polymer fleece. This paper demonstrates fabrication of the matrix, clinical application, and the histological results in two patients. The results suggest that periosteum-derived osteoblasts on a suitable matrix form lamellar bone within 4 months which allows reliable implant insertion.</div>
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<Abstract><AbstractText>Autologous, allogenic and alloplastic materials for bony reconstruction in the cranio-maxillofacial area have many drawbacks thus stimulating the on-going search for new (bio-)materials. Whereas cultivated skin and mucosa are already in clinical routine use in head and neck reconstruction, so far there has been no successful clinical application to the best of our knowledge of periosteum-derived, tissue-engineered bone for augmentation of the edentulous posterior maxilla. In a pilot study, augmentation of the posterior maxilla was carried out using a bone matrix derived from mandibular periosteal cells on a polymer fleece. This paper demonstrates fabrication of the matrix, clinical application, and the histological results in two patients. The results suggest that periosteum-derived osteoblasts on a suitable matrix form lamellar bone within 4 months which allows reliable implant insertion.</AbstractText>
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