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Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo

To improve the regenerative performance of nano-hydroxyapatite/coralline (nHA/coral) block grafting in a canine mandibular critical-size defect model, nHA/coral blocks were coated with recombinant human vascular endothelial growth factor(165) (rhVEGF) via physical adsorption (3 μg rhVEGF(165) per nH...

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Autores principales: Du, Bing, Liu, Weizhen, Deng, Yue, Li, Shaobing, Liu, Xiangning, Gao, Yan, Zhou, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4386782/
https://www.ncbi.nlm.nih.gov/pubmed/25848271
http://dx.doi.org/10.2147/IJN.S78331
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author Du, Bing
Liu, Weizhen
Deng, Yue
Li, Shaobing
Liu, Xiangning
Gao, Yan
Zhou, Lei
author_facet Du, Bing
Liu, Weizhen
Deng, Yue
Li, Shaobing
Liu, Xiangning
Gao, Yan
Zhou, Lei
author_sort Du, Bing
collection PubMed
description To improve the regenerative performance of nano-hydroxyapatite/coralline (nHA/coral) block grafting in a canine mandibular critical-size defect model, nHA/coral blocks were coated with recombinant human vascular endothelial growth factor(165) (rhVEGF) via physical adsorption (3 μg rhVEGF(165) per nHA/coral block). After the nHA/coral blocks and VEGF/nHA/coral blocks were randomly implanted into the mandibular box-shaped defects in a split-mouth design, the healing process was evaluated by histological observation and histomorphometric and immunohistological analyses. The histological evaluations revealed the ingrowth of newly formed blood vessels and bone at the periphery and cores of the blocks in both groups at both 3 and 8 weeks postsurgery, respectively. In the histomorphometric analysis, the VEGF/nHA/coral group exhibited a larger quantity of new bone formation at 3 and 8 weeks postsurgery. The percentages of newly formed bone within the entire blocks in the VEGF/nHA/coral group were 27.3%±8.1% and 39.3%±12.8% at 3 weeks and 8 weeks, respectively, and these values were slightly greater than those of the nHA/coral group (21.7%±3.0% and 32.6%±10.3%, respectively), but the differences were not significant (P>0.05). The immunohistological evaluations revealed that the neovascular density in the VEGF/nHA/coral group (146±32.9 vessel/mm(2)) was much greater than that in the nHA/coral group (105±51.8 vessel/mm(2)) at the 3-week time point (P<0.05), but no significant difference was observed at the 8-week time point (341±86.1 and 269±50.7 vessel/mm(2), respectively, P>0.05). The present study indicated that nHA/coral blocks might be optimal scaffolds for block grafting in critical-size mandibular defects and that additional VEGF coating via physical adsorption can promote angiogenesis in the early stage of bone healing, which suggests that prevascularized nHA/coral blocks have significant potential as a bioactive material for bone regeneration in large-scale alveolar defects.
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spelling pubmed-43867822015-04-06 Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo Du, Bing Liu, Weizhen Deng, Yue Li, Shaobing Liu, Xiangning Gao, Yan Zhou, Lei Int J Nanomedicine Original Research To improve the regenerative performance of nano-hydroxyapatite/coralline (nHA/coral) block grafting in a canine mandibular critical-size defect model, nHA/coral blocks were coated with recombinant human vascular endothelial growth factor(165) (rhVEGF) via physical adsorption (3 μg rhVEGF(165) per nHA/coral block). After the nHA/coral blocks and VEGF/nHA/coral blocks were randomly implanted into the mandibular box-shaped defects in a split-mouth design, the healing process was evaluated by histological observation and histomorphometric and immunohistological analyses. The histological evaluations revealed the ingrowth of newly formed blood vessels and bone at the periphery and cores of the blocks in both groups at both 3 and 8 weeks postsurgery, respectively. In the histomorphometric analysis, the VEGF/nHA/coral group exhibited a larger quantity of new bone formation at 3 and 8 weeks postsurgery. The percentages of newly formed bone within the entire blocks in the VEGF/nHA/coral group were 27.3%±8.1% and 39.3%±12.8% at 3 weeks and 8 weeks, respectively, and these values were slightly greater than those of the nHA/coral group (21.7%±3.0% and 32.6%±10.3%, respectively), but the differences were not significant (P>0.05). The immunohistological evaluations revealed that the neovascular density in the VEGF/nHA/coral group (146±32.9 vessel/mm(2)) was much greater than that in the nHA/coral group (105±51.8 vessel/mm(2)) at the 3-week time point (P<0.05), but no significant difference was observed at the 8-week time point (341±86.1 and 269±50.7 vessel/mm(2), respectively, P>0.05). The present study indicated that nHA/coral blocks might be optimal scaffolds for block grafting in critical-size mandibular defects and that additional VEGF coating via physical adsorption can promote angiogenesis in the early stage of bone healing, which suggests that prevascularized nHA/coral blocks have significant potential as a bioactive material for bone regeneration in large-scale alveolar defects. Dove Medical Press 2015-03-31 /pmc/articles/PMC4386782/ /pubmed/25848271 http://dx.doi.org/10.2147/IJN.S78331 Text en © 2015 Du et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Du, Bing
Liu, Weizhen
Deng, Yue
Li, Shaobing
Liu, Xiangning
Gao, Yan
Zhou, Lei
Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo
title Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo
title_full Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo
title_fullStr Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo
title_full_unstemmed Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo
title_short Angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhVEGF(165) in critical-size alveolar bone defects in vivo
title_sort angiogenesis and bone regeneration of porous nano-hydroxyapatite/coralline blocks coated with rhvegf(165) in critical-size alveolar bone defects in vivo
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4386782/
https://www.ncbi.nlm.nih.gov/pubmed/25848271
http://dx.doi.org/10.2147/IJN.S78331
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