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Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study

BACKGROUND: We aimed to histomorphometrically evaluate the effects of Leucocyte-Platelet-Rich Fibrin (L-PRF), with and without the combination of a bone grafting material, for alveolar ridge preservation using an in vivo canine model. MATERIAL AND METHODS: Seven dogs (Female Beagles, ~18-month-old)...

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Autores principales: Park, Gene, Jalkh, Ernesto B Benalcázar, Boczar, Daniel, Bergamo, Edmara TP, Kim, Heoijin, Kurgansky, Gregory, Torroni, Andrea, Gil, Luiz F, Bonfante, Estevam A, Coelho, Paulo G, Witek, Lukasz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medicina Oral S.L. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9445612/
https://www.ncbi.nlm.nih.gov/pubmed/35975804
http://dx.doi.org/10.4317/medoral.25462
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author Park, Gene
Jalkh, Ernesto B Benalcázar
Boczar, Daniel
Bergamo, Edmara TP
Kim, Heoijin
Kurgansky, Gregory
Torroni, Andrea
Gil, Luiz F
Bonfante, Estevam A
Coelho, Paulo G
Witek, Lukasz
author_facet Park, Gene
Jalkh, Ernesto B Benalcázar
Boczar, Daniel
Bergamo, Edmara TP
Kim, Heoijin
Kurgansky, Gregory
Torroni, Andrea
Gil, Luiz F
Bonfante, Estevam A
Coelho, Paulo G
Witek, Lukasz
author_sort Park, Gene
collection PubMed
description BACKGROUND: We aimed to histomorphometrically evaluate the effects of Leucocyte-Platelet-Rich Fibrin (L-PRF), with and without the combination of a bone grafting material, for alveolar ridge preservation using an in vivo canine model. MATERIAL AND METHODS: Seven dogs (Female Beagles, ~18-month-old) were acquired for the study. L-PRF was prepared from each individual animal by drawing venous blood and spinning them through a centrifuge at 408 RCF-clot (IntrasSpin, Intra-Lock, Boca Raton, FL). L-PRF membranes were obtained from XPression fabrication kit (Biohorizons Implant Systems, Inc., AL, USA). A split mouth approach was adopted with the first molar mesial and distal socket defects treated in an interpolated fashion of the following study groups: 1) Empty socket (negative control); 2) OSS filled defect 3) L-PRF membrane; and 4) Mix of Bio-Oss® with L-PRF. After six weeks, samples were harvested, histologically processed, and evaluated for bone area fraction occupancy (BAFO), vertical/horizontal ridge dimensions (VRD and HRD, respectively), and area of coronal soft tissue infiltration. RESULTS: BAFO was statistically lower for the control group in comparison to all treatment groups. Defects treated with Bio-Oss® were not statistically different then defects treated solely with L-PRF. Collapsed across all groups, L-PRF exhibited higher degrees of BAFO than groups without L-PRF. Defects filled with Bio-Oss® and Bio-Oss® with L-PRF demonstrated greater maintenance of VRD relative to the control group. Collapsed across all groups, Bio-Oss® maintained the VRD and resulted in less area of coronal soft tissue infiltration compared to the empty defect. Soft tissue infiltration observed at the coronal area was not statistically different among defects filled with L-PRF, Bio-Oss®, and Bio-Oss® with L-PRF. CONCLUSIONS: Inclusion of L-PRF to particulate xenograft did not promote additional bone heading at 6 weeks in vivo. However, we noted that L-PRF alone promoted alveolar socket regeneration to levels comparable to particulate xenografts, suggesting its potential utilization for socket preservation. Key words:L-PRF, bone healing, socket preservation.
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spelling pubmed-94456122022-09-06 Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study Park, Gene Jalkh, Ernesto B Benalcázar Boczar, Daniel Bergamo, Edmara TP Kim, Heoijin Kurgansky, Gregory Torroni, Andrea Gil, Luiz F Bonfante, Estevam A Coelho, Paulo G Witek, Lukasz Med Oral Patol Oral Cir Bucal Research BACKGROUND: We aimed to histomorphometrically evaluate the effects of Leucocyte-Platelet-Rich Fibrin (L-PRF), with and without the combination of a bone grafting material, for alveolar ridge preservation using an in vivo canine model. MATERIAL AND METHODS: Seven dogs (Female Beagles, ~18-month-old) were acquired for the study. L-PRF was prepared from each individual animal by drawing venous blood and spinning them through a centrifuge at 408 RCF-clot (IntrasSpin, Intra-Lock, Boca Raton, FL). L-PRF membranes were obtained from XPression fabrication kit (Biohorizons Implant Systems, Inc., AL, USA). A split mouth approach was adopted with the first molar mesial and distal socket defects treated in an interpolated fashion of the following study groups: 1) Empty socket (negative control); 2) OSS filled defect 3) L-PRF membrane; and 4) Mix of Bio-Oss® with L-PRF. After six weeks, samples were harvested, histologically processed, and evaluated for bone area fraction occupancy (BAFO), vertical/horizontal ridge dimensions (VRD and HRD, respectively), and area of coronal soft tissue infiltration. RESULTS: BAFO was statistically lower for the control group in comparison to all treatment groups. Defects treated with Bio-Oss® were not statistically different then defects treated solely with L-PRF. Collapsed across all groups, L-PRF exhibited higher degrees of BAFO than groups without L-PRF. Defects filled with Bio-Oss® and Bio-Oss® with L-PRF demonstrated greater maintenance of VRD relative to the control group. Collapsed across all groups, Bio-Oss® maintained the VRD and resulted in less area of coronal soft tissue infiltration compared to the empty defect. Soft tissue infiltration observed at the coronal area was not statistically different among defects filled with L-PRF, Bio-Oss®, and Bio-Oss® with L-PRF. CONCLUSIONS: Inclusion of L-PRF to particulate xenograft did not promote additional bone heading at 6 weeks in vivo. However, we noted that L-PRF alone promoted alveolar socket regeneration to levels comparable to particulate xenografts, suggesting its potential utilization for socket preservation. Key words:L-PRF, bone healing, socket preservation. Medicina Oral S.L. 2022-09 2022-08-17 /pmc/articles/PMC9445612/ /pubmed/35975804 http://dx.doi.org/10.4317/medoral.25462 Text en Copyright: © 2022 Medicina Oral S.L. https://creativecommons.org/licenses/by/2.5/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 Research
Park, Gene
Jalkh, Ernesto B Benalcázar
Boczar, Daniel
Bergamo, Edmara TP
Kim, Heoijin
Kurgansky, Gregory
Torroni, Andrea
Gil, Luiz F
Bonfante, Estevam A
Coelho, Paulo G
Witek, Lukasz
Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study
title Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study
title_full Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study
title_fullStr Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study
title_full_unstemmed Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study
title_short Bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: An experimental pre-clinical study
title_sort bone regeneration at extraction sockets filled with leukocyte-platelet-rich fibrin: an experimental pre-clinical study
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9445612/
https://www.ncbi.nlm.nih.gov/pubmed/35975804
http://dx.doi.org/10.4317/medoral.25462
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