Wicking Property of Graft Material Enhanced Bone Regeneration in the Ovariectomized Rat Model
Tissue Engineering and Regenerative Medicine
; (6): 503-510, 2018.
Article
em En
| WPRIM
| ID: wpr-716159
Biblioteca responsável:
WPRO
ABSTRACT
BACKGROUND: Recruitment and homing cells into graft materials from host tissue is crucial for bone regeneration. METHODS: Highly porous, multi-level structural, hydroxyapatite bone void filler (HA-BVF) have been investigated to restore critical size bone defects. The aim was to investigate a feasibility of bone regeneration of synthetic HA-BVF compared to commercial xenograft (Bio-Oss). HA-BVF of 0.7 mm in average diameter was prepared via template coating method. Groups of animals (n = 6) were divided into two with normal (Sham) or induced osteoporotic conditions (Ovx). Subsequently, subdivided into three treated with HA-BVF as an experiment or Bio-Oss as a positive control or no treatment as a negative control (defect). The new bone formation was analyzed by micro-CT and histology. RESULTS: At 4 weeks post-surgery, new bone formation was initiated from all groups. At 8 weeks post-surgery, new bone formation in the HA-BVF groups was greater than Bio-Oss groups. Extraordinarily greater bone regeneration within the Ovx-HA group than Sham-Bio-Oss or Ovx-Bio-Oss group (p<0.05). CONCLUSION: This study suggests that the immediate wicking property of HA-BVF from host tissue activates a natural healing cascade without the addition of exogeneous factors or progenitor cells. HA-BVF may be an effective alternative for repairing bone defects under both normal and osteoporotic bone conditions.
Palavras-chave
Texto completo:
1
Base de dados:
WPRIM
Assunto principal:
Osteogênese
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Osteoporose
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Células-Tronco
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Regeneração Óssea
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Ação Capilar
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Durapatita
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Transplantes
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Modelos Animais
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Xenoenxertos
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Métodos
Tipo de estudo:
Prognostic_studies
Limite:
Animals
Idioma:
En
Revista:
Tissue Engineering and Regenerative Medicine
Ano de publicação:
2018
Tipo de documento:
Article