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EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR

There is much interest in understanding the influence of the immune system on bone healing, including a number of reports suggesting a beneficial effect of FK506 (tacrolimus) in this regard. The influence of FK506 in a rat, femoral, critical size defect was examined using locally implanted, recombin...

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Autores principales: De la Vega, R.E., Coenen, M.J., Müller, S.A., Nagelli, C.V., Quirk, N.P., Lopez de Padilla, C., Evans, C.H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7816824/
https://www.ncbi.nlm.nih.gov/pubmed/33021330
http://dx.doi.org/10.22203/eCM.v040a10
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author De la Vega, R.E.
Coenen, M.J.
Müller, S.A.
Nagelli, C.V.
Quirk, N.P.
Lopez de Padilla, C.
Evans, C.H.
author_facet De la Vega, R.E.
Coenen, M.J.
Müller, S.A.
Nagelli, C.V.
Quirk, N.P.
Lopez de Padilla, C.
Evans, C.H.
author_sort De la Vega, R.E.
collection PubMed
description There is much interest in understanding the influence of the immune system on bone healing, including a number of reports suggesting a beneficial effect of FK506 (tacrolimus) in this regard. The influence of FK506 in a rat, femoral, critical size defect was examined using locally implanted, recombinant, human (rh) BMP-2 and adenovirally-transduced, autologous, adipose-derived mesenchymal stromal cells (AD-MSCs) expressing BMP-2. FK506 was delivered systemically using an implanted osmotic pump. Empty defects and those implanted with unmodified AD-MSCs did not heal in the presence or absence of FK506. Defects treated with rhBMP-2 healed with a large callus containing thin cortices and wispy trabeculae; this, too, was unaffected by FK506. A third of defects implanted with adenovirally-transduced AD-MSCs healed, but this improved to 100 % in the presence of FK506. New bone formed in response to BMP-2 synthesised endogenously by the genetically modified cells had a slimmer callus than those healed by rhBMP-2, with improved cortication and advanced reconstitution of marrow. These results suggest that FK506 may have had little effect on the intrinsic biology of bone healing, but improved healing in response to adenovirally-transduced cells by inhibiting immune responses to the first-generation adenovirus used here. Because the genetically modified cells produced bone of higher quality at far lower doses of BMP-2, this approach should be explored in subsequent research.
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spelling pubmed-78168242021-01-20 EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR De la Vega, R.E. Coenen, M.J. Müller, S.A. Nagelli, C.V. Quirk, N.P. Lopez de Padilla, C. Evans, C.H. Eur Cell Mater Article There is much interest in understanding the influence of the immune system on bone healing, including a number of reports suggesting a beneficial effect of FK506 (tacrolimus) in this regard. The influence of FK506 in a rat, femoral, critical size defect was examined using locally implanted, recombinant, human (rh) BMP-2 and adenovirally-transduced, autologous, adipose-derived mesenchymal stromal cells (AD-MSCs) expressing BMP-2. FK506 was delivered systemically using an implanted osmotic pump. Empty defects and those implanted with unmodified AD-MSCs did not heal in the presence or absence of FK506. Defects treated with rhBMP-2 healed with a large callus containing thin cortices and wispy trabeculae; this, too, was unaffected by FK506. A third of defects implanted with adenovirally-transduced AD-MSCs healed, but this improved to 100 % in the presence of FK506. New bone formed in response to BMP-2 synthesised endogenously by the genetically modified cells had a slimmer callus than those healed by rhBMP-2, with improved cortication and advanced reconstitution of marrow. These results suggest that FK506 may have had little effect on the intrinsic biology of bone healing, but improved healing in response to adenovirally-transduced cells by inhibiting immune responses to the first-generation adenovirus used here. Because the genetically modified cells produced bone of higher quality at far lower doses of BMP-2, this approach should be explored in subsequent research. 2020-10-06 /pmc/articles/PMC7816824/ /pubmed/33021330 http://dx.doi.org/10.22203/eCM.v040a10 Text en This article is distributed in accordance with Creative Commons Attribution Licence (http://creativecommons.org/licenses/by-sa/4.0/).
spellingShingle Article
De la Vega, R.E.
Coenen, M.J.
Müller, S.A.
Nagelli, C.V.
Quirk, N.P.
Lopez de Padilla, C.
Evans, C.H.
EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR
title EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR
title_full EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR
title_fullStr EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR
title_full_unstemmed EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR
title_short EFFECTS OF FK506 ON THE HEALING OF DIAPHYSEAL, CRITICAL SIZE DEFECTS IN THE RAT FEMUR
title_sort effects of fk506 on the healing of diaphyseal, critical size defects in the rat femur
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7816824/
https://www.ncbi.nlm.nih.gov/pubmed/33021330
http://dx.doi.org/10.22203/eCM.v040a10
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