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Accelerated fracture healing in mice lacking the 5-lipoxygenase gene

BACKGROUND AND PURPOSE: Cyclooxygenase-2 (COX-2) promotes inflammation by synthesizing pro-inflammatory prostaglandins from arachidonic acid. Inflammation is an early response to bone fracture, and ablation of COX-2 activity impairs fracture healing. Arachidonic acid is also converted into leukotrie...

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Autores principales: Manigrasso, Michaele B, O'Connor, J Patrick
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Informa Healthcare 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3216088/
https://www.ncbi.nlm.nih.gov/pubmed/21067431
http://dx.doi.org/10.3109/17453674.2010.533931
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author Manigrasso, Michaele B
O'Connor, J Patrick
author_facet Manigrasso, Michaele B
O'Connor, J Patrick
author_sort Manigrasso, Michaele B
collection PubMed
description BACKGROUND AND PURPOSE: Cyclooxygenase-2 (COX-2) promotes inflammation by synthesizing pro-inflammatory prostaglandins from arachidonic acid. Inflammation is an early response to bone fracture, and ablation of COX-2 activity impairs fracture healing. Arachidonic acid is also converted into leukotrienes by 5-lipoxygenase (5-LO). We hypothesized that 5-LO is a negative regulator of fracture healing and that in the absence of COX-2, excess leukotrienes synthesized by 5-LO will impair fracture healing. METHODS: Fracture healing was assessed in mice with a targeted 5-LO mutation (5-LO(KO) mice) and control mice by radiographic and histological observations, and measured by histomorphometry and torsional mechanical testing. To assess effects on arachidonic acid metabolism, prostaglandin E2, F2α, and leukotriene B4 levels were measured in the fracture calluses of control, 5-LO(KO) COX-1(KO), and COX-2(KO) mice by enzyme linked immunoassays. RESULTS: Femur fractures in 5-LO(KO) mice rapidly developed a cartilaginous callus that was replaced with bone to heal fractures faster than in control mice. Femurs from 5-LO(KO) mice had substantially better mechanical properties after 1 month of healing than did control mice. Callus leukotriene levels were 4-fold higher in mice homozygous for a targeted mutation in the COX-2 gene (COX-2(KO)), which indicated that arachidonic acid was shunted into the 5-LO pathway in the absence of COX-2. INTERPRETATION: These experiments show that 5-LO negatively regulates fracture healing and that shunting of arachidonic acid into the 5-LO pathway may account, at least in part, for the impaired fracture healing response observed in COX-2(KO) mice.
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spelling pubmed-32160882011-11-25 Accelerated fracture healing in mice lacking the 5-lipoxygenase gene Manigrasso, Michaele B O'Connor, J Patrick Acta Orthop Article BACKGROUND AND PURPOSE: Cyclooxygenase-2 (COX-2) promotes inflammation by synthesizing pro-inflammatory prostaglandins from arachidonic acid. Inflammation is an early response to bone fracture, and ablation of COX-2 activity impairs fracture healing. Arachidonic acid is also converted into leukotrienes by 5-lipoxygenase (5-LO). We hypothesized that 5-LO is a negative regulator of fracture healing and that in the absence of COX-2, excess leukotrienes synthesized by 5-LO will impair fracture healing. METHODS: Fracture healing was assessed in mice with a targeted 5-LO mutation (5-LO(KO) mice) and control mice by radiographic and histological observations, and measured by histomorphometry and torsional mechanical testing. To assess effects on arachidonic acid metabolism, prostaglandin E2, F2α, and leukotriene B4 levels were measured in the fracture calluses of control, 5-LO(KO) COX-1(KO), and COX-2(KO) mice by enzyme linked immunoassays. RESULTS: Femur fractures in 5-LO(KO) mice rapidly developed a cartilaginous callus that was replaced with bone to heal fractures faster than in control mice. Femurs from 5-LO(KO) mice had substantially better mechanical properties after 1 month of healing than did control mice. Callus leukotriene levels were 4-fold higher in mice homozygous for a targeted mutation in the COX-2 gene (COX-2(KO)), which indicated that arachidonic acid was shunted into the 5-LO pathway in the absence of COX-2. INTERPRETATION: These experiments show that 5-LO negatively regulates fracture healing and that shunting of arachidonic acid into the 5-LO pathway may account, at least in part, for the impaired fracture healing response observed in COX-2(KO) mice. Informa Healthcare 2010-12 2010-11-26 /pmc/articles/PMC3216088/ /pubmed/21067431 http://dx.doi.org/10.3109/17453674.2010.533931 Text en Copyright: © Nordic Orthopaedic Federation http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the source is credited.
spellingShingle Article
Manigrasso, Michaele B
O'Connor, J Patrick
Accelerated fracture healing in mice lacking the 5-lipoxygenase gene
title Accelerated fracture healing in mice lacking the 5-lipoxygenase gene
title_full Accelerated fracture healing in mice lacking the 5-lipoxygenase gene
title_fullStr Accelerated fracture healing in mice lacking the 5-lipoxygenase gene
title_full_unstemmed Accelerated fracture healing in mice lacking the 5-lipoxygenase gene
title_short Accelerated fracture healing in mice lacking the 5-lipoxygenase gene
title_sort accelerated fracture healing in mice lacking the 5-lipoxygenase gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3216088/
https://www.ncbi.nlm.nih.gov/pubmed/21067431
http://dx.doi.org/10.3109/17453674.2010.533931
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