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Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits

In the present study, we describe autologous blood coagulum (ABC) as a physiological carrier for BMP6 to induce new bone formation. Recombinant human BMP6 (rhBMP6), dispersed within ABC and formed as an autologous bone graft substitute (ABGS), was evaluated either with or without allograft bone part...

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Autores principales: Vukicevic, Slobodan, Grgurevic, Lovorka, Erjavec, Igor, Pecin, Marko, Bordukalo‐Niksic, Tatjana, Stokovic, Nikola, Lipar, Marija, Capak, Hrvoje, Maticic, Drazen, Windhager, Reinhard, Sampath, T. Kuber, Gupta, Munish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027565/
https://www.ncbi.nlm.nih.gov/pubmed/31671243
http://dx.doi.org/10.1002/term.2981
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author Vukicevic, Slobodan
Grgurevic, Lovorka
Erjavec, Igor
Pecin, Marko
Bordukalo‐Niksic, Tatjana
Stokovic, Nikola
Lipar, Marija
Capak, Hrvoje
Maticic, Drazen
Windhager, Reinhard
Sampath, T. Kuber
Gupta, Munish
author_facet Vukicevic, Slobodan
Grgurevic, Lovorka
Erjavec, Igor
Pecin, Marko
Bordukalo‐Niksic, Tatjana
Stokovic, Nikola
Lipar, Marija
Capak, Hrvoje
Maticic, Drazen
Windhager, Reinhard
Sampath, T. Kuber
Gupta, Munish
author_sort Vukicevic, Slobodan
collection PubMed
description In the present study, we describe autologous blood coagulum (ABC) as a physiological carrier for BMP6 to induce new bone formation. Recombinant human BMP6 (rhBMP6), dispersed within ABC and formed as an autologous bone graft substitute (ABGS), was evaluated either with or without allograft bone particles (ALLO) in rat subcutaneous implants and in a posterolateral lumbar fusion (PLF) model in rabbits. ABGS induced endochondral bone differentiation in rat subcutaneous implants. Coating ALLO by ABC significantly decreased the formation of multinucleated foreign body giant cells (FBGCs) in implants, as compared with ALLO alone. However, addition of rhBMP6 to ABC/ALLO induced a robust endochondral bone formation with little or no FBGCs in the implant. In rabbit PLF model, ABGS induced new bone formation uniformly within the implant resulting in a complete fusion when placed between two lumbar transverse processes in the posterolateral gutter with an optimum dose of 100‐μg rhBMP6 per ml of ABC. ABGS containing ALLO also resulted in a fusion where the ALLO was replaced by the newly formed bone via creeping substitution. Our findings demonstrate for the first time that rhBMP6, with ABC as a carrier, induced a robust bone formation with a complete spinal fusion in a rabbit PLF model. RhBMP6 was effective at low doses with ABC serving as a physiological substratum providing a permissive environment by protecting against foreign body reaction elicited by ALLO.
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spelling pubmed-70275652020-02-24 Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits Vukicevic, Slobodan Grgurevic, Lovorka Erjavec, Igor Pecin, Marko Bordukalo‐Niksic, Tatjana Stokovic, Nikola Lipar, Marija Capak, Hrvoje Maticic, Drazen Windhager, Reinhard Sampath, T. Kuber Gupta, Munish J Tissue Eng Regen Med Research Articles In the present study, we describe autologous blood coagulum (ABC) as a physiological carrier for BMP6 to induce new bone formation. Recombinant human BMP6 (rhBMP6), dispersed within ABC and formed as an autologous bone graft substitute (ABGS), was evaluated either with or without allograft bone particles (ALLO) in rat subcutaneous implants and in a posterolateral lumbar fusion (PLF) model in rabbits. ABGS induced endochondral bone differentiation in rat subcutaneous implants. Coating ALLO by ABC significantly decreased the formation of multinucleated foreign body giant cells (FBGCs) in implants, as compared with ALLO alone. However, addition of rhBMP6 to ABC/ALLO induced a robust endochondral bone formation with little or no FBGCs in the implant. In rabbit PLF model, ABGS induced new bone formation uniformly within the implant resulting in a complete fusion when placed between two lumbar transverse processes in the posterolateral gutter with an optimum dose of 100‐μg rhBMP6 per ml of ABC. ABGS containing ALLO also resulted in a fusion where the ALLO was replaced by the newly formed bone via creeping substitution. Our findings demonstrate for the first time that rhBMP6, with ABC as a carrier, induced a robust bone formation with a complete spinal fusion in a rabbit PLF model. RhBMP6 was effective at low doses with ABC serving as a physiological substratum providing a permissive environment by protecting against foreign body reaction elicited by ALLO. John Wiley and Sons Inc. 2019-11-10 2020-01 /pmc/articles/PMC7027565/ /pubmed/31671243 http://dx.doi.org/10.1002/term.2981 Text en © 2019 The Authors. Journal of Tissue Engineering and Regenerative Medicine published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Vukicevic, Slobodan
Grgurevic, Lovorka
Erjavec, Igor
Pecin, Marko
Bordukalo‐Niksic, Tatjana
Stokovic, Nikola
Lipar, Marija
Capak, Hrvoje
Maticic, Drazen
Windhager, Reinhard
Sampath, T. Kuber
Gupta, Munish
Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
title Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
title_full Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
title_fullStr Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
title_full_unstemmed Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
title_short Autologous blood coagulum is a physiological carrier for BMP6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
title_sort autologous blood coagulum is a physiological carrier for bmp6 to induce new bone formation and promote posterolateral lumbar spine fusion in rabbits
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027565/
https://www.ncbi.nlm.nih.gov/pubmed/31671243
http://dx.doi.org/10.1002/term.2981
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