Cargando…

A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP

The knee joint is a continuous structure of bone and cartilage tissue, making it difficult to regenerate using artificial biomaterials. In a previous study, we succeeded in developing honeycomb tricalcium phosphate (TCP), which has through-and-through holes and is able to provide the optimum microen...

Descripción completa

Detalles Bibliográficos
Autores principales: Takabatake, Kiyofumi, Tsujigiwa, Hidetsugu, Yoshida, Aki, Furumatsu, Takayuki, Kawai, Hotaka, Oo, May Wathone, Nakano, Keisuke, Nagatsuka, Hitoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658628/
https://www.ncbi.nlm.nih.gov/pubmed/34885378
http://dx.doi.org/10.3390/ma14237225
_version_ 1784612775089143808
author Takabatake, Kiyofumi
Tsujigiwa, Hidetsugu
Yoshida, Aki
Furumatsu, Takayuki
Kawai, Hotaka
Oo, May Wathone
Nakano, Keisuke
Nagatsuka, Hitoshi
author_facet Takabatake, Kiyofumi
Tsujigiwa, Hidetsugu
Yoshida, Aki
Furumatsu, Takayuki
Kawai, Hotaka
Oo, May Wathone
Nakano, Keisuke
Nagatsuka, Hitoshi
author_sort Takabatake, Kiyofumi
collection PubMed
description The knee joint is a continuous structure of bone and cartilage tissue, making it difficult to regenerate using artificial biomaterials. In a previous study, we succeeded in developing honeycomb tricalcium phosphate (TCP), which has through-and-through holes and is able to provide the optimum microenvironment for hard tissue regeneration. We demonstrated that TCP with 300 μm pore diameters (300TCP) induced vigorous bone formation, and that TCP with 75 μm pore diameters (75TCP) induced cartilage formation. In the present study, we regenerated a knee joint defect using honeycomb TCP. 75TCP and 300TCP were loaded with transforming growth factor (TGF)-β alone or bone morphogenic protein (BMP)-2+TGF-β with or without Matrigel and transplanted into knee joint defect model rabbits. 75TCP showed no bone or cartilage tissue formation in any of the groups with TGF-β alone and BMP-2+TGF-β with/without Matrigel. However, for 300TCP and BMP-2+TGF-β with or without Matrigel, vigorous bone tissue formation was observed in the TCP holes, and cartilage tissue formation in the TCP surface layer was continuous with the existing cartilage. The cartilage area in the TCP surface was larger in the group without Matrigel (with BMP-2+TGF-β) than in the group with Matrigel (with BMP-2+TGF-β). Therefore, honeycomb TCP can induce the seamless regeneration of bone and cartilage in a knee joint.
format Online
Article
Text
id pubmed-8658628
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-86586282021-12-10 A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP Takabatake, Kiyofumi Tsujigiwa, Hidetsugu Yoshida, Aki Furumatsu, Takayuki Kawai, Hotaka Oo, May Wathone Nakano, Keisuke Nagatsuka, Hitoshi Materials (Basel) Article The knee joint is a continuous structure of bone and cartilage tissue, making it difficult to regenerate using artificial biomaterials. In a previous study, we succeeded in developing honeycomb tricalcium phosphate (TCP), which has through-and-through holes and is able to provide the optimum microenvironment for hard tissue regeneration. We demonstrated that TCP with 300 μm pore diameters (300TCP) induced vigorous bone formation, and that TCP with 75 μm pore diameters (75TCP) induced cartilage formation. In the present study, we regenerated a knee joint defect using honeycomb TCP. 75TCP and 300TCP were loaded with transforming growth factor (TGF)-β alone or bone morphogenic protein (BMP)-2+TGF-β with or without Matrigel and transplanted into knee joint defect model rabbits. 75TCP showed no bone or cartilage tissue formation in any of the groups with TGF-β alone and BMP-2+TGF-β with/without Matrigel. However, for 300TCP and BMP-2+TGF-β with or without Matrigel, vigorous bone tissue formation was observed in the TCP holes, and cartilage tissue formation in the TCP surface layer was continuous with the existing cartilage. The cartilage area in the TCP surface was larger in the group without Matrigel (with BMP-2+TGF-β) than in the group with Matrigel (with BMP-2+TGF-β). Therefore, honeycomb TCP can induce the seamless regeneration of bone and cartilage in a knee joint. MDPI 2021-11-26 /pmc/articles/PMC8658628/ /pubmed/34885378 http://dx.doi.org/10.3390/ma14237225 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Takabatake, Kiyofumi
Tsujigiwa, Hidetsugu
Yoshida, Aki
Furumatsu, Takayuki
Kawai, Hotaka
Oo, May Wathone
Nakano, Keisuke
Nagatsuka, Hitoshi
A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP
title A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP
title_full A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP
title_fullStr A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP
title_full_unstemmed A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP
title_short A Pilot Study of Seamless Regeneration of Bone and Cartilage in Knee Joint Regeneration Using Honeycomb TCP
title_sort pilot study of seamless regeneration of bone and cartilage in knee joint regeneration using honeycomb tcp
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658628/
https://www.ncbi.nlm.nih.gov/pubmed/34885378
http://dx.doi.org/10.3390/ma14237225
work_keys_str_mv AT takabatakekiyofumi apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT tsujigiwahidetsugu apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT yoshidaaki apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT furumatsutakayuki apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT kawaihotaka apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT oomaywathone apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT nakanokeisuke apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT nagatsukahitoshi apilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT takabatakekiyofumi pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT tsujigiwahidetsugu pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT yoshidaaki pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT furumatsutakayuki pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT kawaihotaka pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT oomaywathone pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT nakanokeisuke pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp
AT nagatsukahitoshi pilotstudyofseamlessregenerationofboneandcartilageinkneejointregenerationusinghoneycombtcp