A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig
To test the probable osteoinductive properties of NanoBone®, a new highly non-sintered porous nano-crystallinehydroxylapatite bone substitute embedded into a silica gel matrix, granules were implanted subcutaneously and intramuscularlyinto the back region of 18 mini pigs. After periods of 5 and 10 w...
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Via Medica
2010-04-01
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Series: | Folia Histochemica et Cytobiologica |
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doaj-0bac8b404ede4807bd52c1f51119e41d2020-11-24T23:27:15ZengVia MedicaFolia Histochemica et Cytobiologica0239-85081897-56312010-04-01484589596A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pigWerner GötzSolvig LenzChristoph ReichertKai-Olaf HenkelVolker BienengräberLaura PernickaKarsten K.H. GundlachTomasz GredesThomas GerberTomasz GedrangeFriedhelm HeinemannTo test the probable osteoinductive properties of NanoBone®, a new highly non-sintered porous nano-crystallinehydroxylapatite bone substitute embedded into a silica gel matrix, granules were implanted subcutaneously and intramuscularlyinto the back region of 18 mini pigs. After periods of 5 and 10 weeks as well as 4 and 8 months, implantation siteswere investigated using histological and histomorphometric procedures. Signs of early osteogenesis could already be detectedafter 5 weeks. The later periods were characterized by increasing membranous osteogenesis in and around the granulesleading to the formation of bone-like structures showing periosteal and tendon-like structures with bone marrow and focalchondrogenesis. Bone formation was better in the subcutaneous than in the intramuscular implantation sites. This ectopicosteogenesis is discussed with regard to the nanoporosity and microporosity of the material, physico-chemical interactionsat its surface, the differentiation of osteoblasts, the role of angiogenesis and the probable involvement of growth factors. Theresults of this preliminary study indicate that this biomaterial has osteoinductive potential and induces the formation of bonestructures, mainly in subcutaneous adipose tissue in the pig.http://www.fhc.viamedica.pl/darmowy_pdf.phtml?indeks=128&indeks_art=1274Bone graftbone remodellingosteogenesissilicahydroxyapatiteosteoblastosteoclast |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Werner Götz Solvig Lenz Christoph Reichert Kai-Olaf Henkel Volker Bienengräber Laura Pernicka Karsten K.H. Gundlach Tomasz Gredes Thomas Gerber Tomasz Gedrange Friedhelm Heinemann |
spellingShingle |
Werner Götz Solvig Lenz Christoph Reichert Kai-Olaf Henkel Volker Bienengräber Laura Pernicka Karsten K.H. Gundlach Tomasz Gredes Thomas Gerber Tomasz Gedrange Friedhelm Heinemann A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig Folia Histochemica et Cytobiologica Bone graft bone remodelling osteogenesis silica hydroxyapatite osteoblast osteoclast |
author_facet |
Werner Götz Solvig Lenz Christoph Reichert Kai-Olaf Henkel Volker Bienengräber Laura Pernicka Karsten K.H. Gundlach Tomasz Gredes Thomas Gerber Tomasz Gedrange Friedhelm Heinemann |
author_sort |
Werner Götz |
title |
A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig |
title_short |
A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig |
title_full |
A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig |
title_fullStr |
A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig |
title_full_unstemmed |
A preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig |
title_sort |
preliminary study in osteoinduction by a nano-crystalline hydroxyapatite in the mini pig |
publisher |
Via Medica |
series |
Folia Histochemica et Cytobiologica |
issn |
0239-8508 1897-5631 |
publishDate |
2010-04-01 |
description |
To test the probable osteoinductive properties of NanoBone®, a new highly non-sintered porous nano-crystallinehydroxylapatite bone substitute embedded into a silica gel matrix, granules were implanted subcutaneously and intramuscularlyinto the back region of 18 mini pigs. After periods of 5 and 10 weeks as well as 4 and 8 months, implantation siteswere investigated using histological and histomorphometric procedures. Signs of early osteogenesis could already be detectedafter 5 weeks. The later periods were characterized by increasing membranous osteogenesis in and around the granulesleading to the formation of bone-like structures showing periosteal and tendon-like structures with bone marrow and focalchondrogenesis. Bone formation was better in the subcutaneous than in the intramuscular implantation sites. This ectopicosteogenesis is discussed with regard to the nanoporosity and microporosity of the material, physico-chemical interactionsat its surface, the differentiation of osteoblasts, the role of angiogenesis and the probable involvement of growth factors. Theresults of this preliminary study indicate that this biomaterial has osteoinductive potential and induces the formation of bonestructures, mainly in subcutaneous adipose tissue in the pig. |
topic |
Bone graft bone remodelling osteogenesis silica hydroxyapatite osteoblast osteoclast |
url |
http://www.fhc.viamedica.pl/darmowy_pdf.phtml?indeks=128&indeks_art=1274 |
work_keys_str_mv |
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