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Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading

The aim of this study was to evaluate the influence of mechanical unloading on the repair of bone defects with implantation of biodegradable bone substitutes. Spherical granules of biodegradable hydroxyapatite composed of rod-shaped particles (RHA) or beta-tricalcium phosphate composed of rod-shaped...

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Autores principales: Ikeda, Tohru, Gonda, Yoshinori, Tatsukawa, Eri, Shibata, Yasuaki, Kamitakahara, Masanobu, Okuda, Takatoshi, Yonezawa, Ikuho, Kurosawa, Hisashi, Ioku, Koji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japan Society of Histochemistry and Cytochemistry 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3496864/
https://www.ncbi.nlm.nih.gov/pubmed/23209337
http://dx.doi.org/10.1267/ahc.12012
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author Ikeda, Tohru
Gonda, Yoshinori
Tatsukawa, Eri
Shibata, Yasuaki
Kamitakahara, Masanobu
Okuda, Takatoshi
Yonezawa, Ikuho
Kurosawa, Hisashi
Ioku, Koji
author_facet Ikeda, Tohru
Gonda, Yoshinori
Tatsukawa, Eri
Shibata, Yasuaki
Kamitakahara, Masanobu
Okuda, Takatoshi
Yonezawa, Ikuho
Kurosawa, Hisashi
Ioku, Koji
author_sort Ikeda, Tohru
collection PubMed
description The aim of this study was to evaluate the influence of mechanical unloading on the repair of bone defects with implantation of biodegradable bone substitutes. Spherical granules of biodegradable hydroxyapatite composed of rod-shaped particles (RHA) or beta-tricalcium phosphate composed of rod-shaped particles (RTCP) were implanted into a bone defect created in the distal end of the right femur of 8-week-old Wistar rats. Two, 6, 10, and 22 weeks after implantation, part of the sciatic nerve in the thigh was resected and exposed to mechanical unloading for 2 weeks. Then, 4, 8, 12 and 24 weeks after implantation, repair of the bone defect was analyzed. As a control, the bone defect without implantation of ceramic granules was also analyzed. Both RHA and RTCP tended to be reduced, but the reduction was not obvious during the experimental period. At 12 and 24 weeks after implantation, the amount of newly formed bone in the animal implanted with RHA was significantly greater than that at 4 weeks after implantation, but that in the animal implanted with RTCP or without implantation was not significantly different. The number of osteoclasts in the region implanted with RHA was significantly larger than that of the region implanted with RTCP or without implantation at 12 and 24 weeks. The activities of alkaline phosphatase in osteoblasts and tartrate-resistant acid phosphatase in osteoclasts were remarkably increased in the bone defects with implantation compared with those in the bone defects without implantation. These results suggested that RHA stimulated osteogenesis and osteoclastogenesis even after 2 weeks of mechanical unloading, and that RHA could be expected to improve the repair of bone defects in patients under the condition of skeletal unloading.
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spelling pubmed-34968642012-12-03 Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading Ikeda, Tohru Gonda, Yoshinori Tatsukawa, Eri Shibata, Yasuaki Kamitakahara, Masanobu Okuda, Takatoshi Yonezawa, Ikuho Kurosawa, Hisashi Ioku, Koji Acta Histochem Cytochem Regular Article The aim of this study was to evaluate the influence of mechanical unloading on the repair of bone defects with implantation of biodegradable bone substitutes. Spherical granules of biodegradable hydroxyapatite composed of rod-shaped particles (RHA) or beta-tricalcium phosphate composed of rod-shaped particles (RTCP) were implanted into a bone defect created in the distal end of the right femur of 8-week-old Wistar rats. Two, 6, 10, and 22 weeks after implantation, part of the sciatic nerve in the thigh was resected and exposed to mechanical unloading for 2 weeks. Then, 4, 8, 12 and 24 weeks after implantation, repair of the bone defect was analyzed. As a control, the bone defect without implantation of ceramic granules was also analyzed. Both RHA and RTCP tended to be reduced, but the reduction was not obvious during the experimental period. At 12 and 24 weeks after implantation, the amount of newly formed bone in the animal implanted with RHA was significantly greater than that at 4 weeks after implantation, but that in the animal implanted with RTCP or without implantation was not significantly different. The number of osteoclasts in the region implanted with RHA was significantly larger than that of the region implanted with RTCP or without implantation at 12 and 24 weeks. The activities of alkaline phosphatase in osteoblasts and tartrate-resistant acid phosphatase in osteoclasts were remarkably increased in the bone defects with implantation compared with those in the bone defects without implantation. These results suggested that RHA stimulated osteogenesis and osteoclastogenesis even after 2 weeks of mechanical unloading, and that RHA could be expected to improve the repair of bone defects in patients under the condition of skeletal unloading. Japan Society of Histochemistry and Cytochemistry 2012-10-31 2012-09-08 /pmc/articles/PMC3496864/ /pubmed/23209337 http://dx.doi.org/10.1267/ahc.12012 Text en © 2012 The Japan Society of Histochemistry and Cytochemistry This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular Article
Ikeda, Tohru
Gonda, Yoshinori
Tatsukawa, Eri
Shibata, Yasuaki
Kamitakahara, Masanobu
Okuda, Takatoshi
Yonezawa, Ikuho
Kurosawa, Hisashi
Ioku, Koji
Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
title Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
title_full Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
title_fullStr Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
title_full_unstemmed Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
title_short Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
title_sort stimulation of osteogenesis in bone defects implanted with biodegradable hydroxyapatite composed of rod-shaped particles under mechanical unloading
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3496864/
https://www.ncbi.nlm.nih.gov/pubmed/23209337
http://dx.doi.org/10.1267/ahc.12012
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