Cargando…

An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein

Platelet‐rich fibrin (PRF) is widely used in regenerative medicine. Nonetheless, major issues include its controversial effects on bone regeneration and a lack of quality‐assured glass tubes required for coagulation. We used porous particles (FBG) comprising a recombinant RGD motif‐enriched collagen...

Descripción completa

Detalles Bibliográficos
Autores principales: Tsukioka, Tsuneyuki, Hiratsuka, Takahiro, Nakamura, Masayuki, Watanabe, Taisuke, Kitamura, Yutaka, Isobe, Kazushige, Okudera, Toshimitsu, Okudera, Hajime, Azuma, Akihiko, Uematsu, Kohya, Nakata, Koh, Kawase, Tomoyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6585782/
https://www.ncbi.nlm.nih.gov/pubmed/30270545
http://dx.doi.org/10.1002/jbm.b.34234
_version_ 1783428772930781184
author Tsukioka, Tsuneyuki
Hiratsuka, Takahiro
Nakamura, Masayuki
Watanabe, Taisuke
Kitamura, Yutaka
Isobe, Kazushige
Okudera, Toshimitsu
Okudera, Hajime
Azuma, Akihiko
Uematsu, Kohya
Nakata, Koh
Kawase, Tomoyuki
author_facet Tsukioka, Tsuneyuki
Hiratsuka, Takahiro
Nakamura, Masayuki
Watanabe, Taisuke
Kitamura, Yutaka
Isobe, Kazushige
Okudera, Toshimitsu
Okudera, Hajime
Azuma, Akihiko
Uematsu, Kohya
Nakata, Koh
Kawase, Tomoyuki
author_sort Tsukioka, Tsuneyuki
collection PubMed
description Platelet‐rich fibrin (PRF) is widely used in regenerative medicine. Nonetheless, major issues include its controversial effects on bone regeneration and a lack of quality‐assured glass tubes required for coagulation. We used porous particles (FBG) comprising a recombinant RGD motif‐enriched collagen I‐like protein to activate the coagulation pathway and examined the effects of the resulting PRF–FBG complex on bone regeneration. Human whole‐blood samples were mixed with FBG in plastic tubes and centrifuged to prepare a PRF–FBG complex. Platelet‐derived growth factor‐BB (PDGF‐BB) levels and cell growth activity were determined by ELISA and a bioassay using osteoblasts. Bone regenerative activity was assessed using a mouse model of calvarial bone defect. FBG facilitated PRF‐like matrix formation during centrifugation. In this PRF–FBG complex, the microstructure of fibrin fibers was similar to that of PRF prepared conventionally in glass tubes. PDGF‐BB levels and mitogenic action were not significantly influenced by FBG. In the bone defect model, although PRF did not exert any significant positive effects on its own, in combination with FBG, it synergistically stimulated new bone formation. This study demonstrated that incorporation of FBG into whole‐blood samples induces PRF formation without the aid of glass tubes. The resulting PRF–FBG complex could be a promising bone grafting material in clinical settings. © 2018 The Authors. Journal of Biomedical Materials Research Part B: Applied Biomaterials published by Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 1420–1430, 2019.
format Online
Article
Text
id pubmed-6585782
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-65857822019-06-27 An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein Tsukioka, Tsuneyuki Hiratsuka, Takahiro Nakamura, Masayuki Watanabe, Taisuke Kitamura, Yutaka Isobe, Kazushige Okudera, Toshimitsu Okudera, Hajime Azuma, Akihiko Uematsu, Kohya Nakata, Koh Kawase, Tomoyuki J Biomed Mater Res B Appl Biomater Original Research Reports Platelet‐rich fibrin (PRF) is widely used in regenerative medicine. Nonetheless, major issues include its controversial effects on bone regeneration and a lack of quality‐assured glass tubes required for coagulation. We used porous particles (FBG) comprising a recombinant RGD motif‐enriched collagen I‐like protein to activate the coagulation pathway and examined the effects of the resulting PRF–FBG complex on bone regeneration. Human whole‐blood samples were mixed with FBG in plastic tubes and centrifuged to prepare a PRF–FBG complex. Platelet‐derived growth factor‐BB (PDGF‐BB) levels and cell growth activity were determined by ELISA and a bioassay using osteoblasts. Bone regenerative activity was assessed using a mouse model of calvarial bone defect. FBG facilitated PRF‐like matrix formation during centrifugation. In this PRF–FBG complex, the microstructure of fibrin fibers was similar to that of PRF prepared conventionally in glass tubes. PDGF‐BB levels and mitogenic action were not significantly influenced by FBG. In the bone defect model, although PRF did not exert any significant positive effects on its own, in combination with FBG, it synergistically stimulated new bone formation. This study demonstrated that incorporation of FBG into whole‐blood samples induces PRF formation without the aid of glass tubes. The resulting PRF–FBG complex could be a promising bone grafting material in clinical settings. © 2018 The Authors. Journal of Biomedical Materials Research Part B: Applied Biomaterials published by Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 1420–1430, 2019. John Wiley & Sons, Inc. 2018-10-01 2019-07 /pmc/articles/PMC6585782/ /pubmed/30270545 http://dx.doi.org/10.1002/jbm.b.34234 Text en © 2018 The Authors. Journal of Biomedical Materials Research Part B: Applied Biomaterials published by Wiley Periodicals, Inc This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research Reports
Tsukioka, Tsuneyuki
Hiratsuka, Takahiro
Nakamura, Masayuki
Watanabe, Taisuke
Kitamura, Yutaka
Isobe, Kazushige
Okudera, Toshimitsu
Okudera, Hajime
Azuma, Akihiko
Uematsu, Kohya
Nakata, Koh
Kawase, Tomoyuki
An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
title An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
title_full An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
title_fullStr An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
title_full_unstemmed An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
title_short An on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
title_sort on‐site preparable, novel bone‐grafting complex consisting of human platelet‐rich fibrin and porous particles made of a recombinant collagen‐like protein
topic Original Research Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6585782/
https://www.ncbi.nlm.nih.gov/pubmed/30270545
http://dx.doi.org/10.1002/jbm.b.34234
work_keys_str_mv AT tsukiokatsuneyuki anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT hiratsukatakahiro anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT nakamuramasayuki anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT watanabetaisuke anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT kitamurayutaka anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT isobekazushige anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT okuderatoshimitsu anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT okuderahajime anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT azumaakihiko anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT uematsukohya anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT nakatakoh anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT kawasetomoyuki anonsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT tsukiokatsuneyuki onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT hiratsukatakahiro onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT nakamuramasayuki onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT watanabetaisuke onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT kitamurayutaka onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT isobekazushige onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT okuderatoshimitsu onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT okuderahajime onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT azumaakihiko onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT uematsukohya onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT nakatakoh onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein
AT kawasetomoyuki onsitepreparablenovelbonegraftingcomplexconsistingofhumanplateletrichfibrinandporousparticlesmadeofarecombinantcollagenlikeprotein