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Novel fibrin-fibronectin matrix accelerates mice skin wound healing

Plasma fibrinogen (F1) and fibronectin (pFN) polymerize to form a fibrin clot that is both a hemostatic and provisional matrix for wound healing. About 90% of plasma F1 has a homodimeric pair of γ chains (γγF1), and 10% has a heterodimeric pair of γ and more acidic γ′ chains (γγ′F1). We have synthes...

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Autores principales: Jara, Carlos Poblete, Wang, Ou, Paulino do Prado, Thais, Ismail, Ayman, Fabian, Frank Marco, Li, Han, Velloso, Licio A., Carlson, Mark A., Burgess, William, Lei, Yuguo, Velander, William H., Araújo, Eliana P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7334397/
https://www.ncbi.nlm.nih.gov/pubmed/32671290
http://dx.doi.org/10.1016/j.bioactmat.2020.06.015
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author Jara, Carlos Poblete
Wang, Ou
Paulino do Prado, Thais
Ismail, Ayman
Fabian, Frank Marco
Li, Han
Velloso, Licio A.
Carlson, Mark A.
Burgess, William
Lei, Yuguo
Velander, William H.
Araújo, Eliana P.
author_facet Jara, Carlos Poblete
Wang, Ou
Paulino do Prado, Thais
Ismail, Ayman
Fabian, Frank Marco
Li, Han
Velloso, Licio A.
Carlson, Mark A.
Burgess, William
Lei, Yuguo
Velander, William H.
Araújo, Eliana P.
author_sort Jara, Carlos Poblete
collection PubMed
description Plasma fibrinogen (F1) and fibronectin (pFN) polymerize to form a fibrin clot that is both a hemostatic and provisional matrix for wound healing. About 90% of plasma F1 has a homodimeric pair of γ chains (γγF1), and 10% has a heterodimeric pair of γ and more acidic γ′ chains (γγ′F1). We have synthesized a novel fibrin matrix exclusively from a 1:1 (molar ratio) complex of γγ′F1 and pFN in the presence of highly active thrombin and recombinant Factor XIII (rFXIIIa). In this matrix, the fibrin nanofibers were decorated with pFN nanoclusters (termed γγ′F1:pFN fibrin). In contrast, fibrin made from 1:1 mixture of γγF1 and pFN formed a sporadic distribution of “pFN droplets” (termed γγF1+pFN fibrin). The γγ′F1:pFN fibrin enhanced the adhesion of primary human umbilical vein endothelium cells (HUVECs) relative to the γγF1+FN fibrin. Three dimensional (3D) culturing showed that the γγ′F1:pFN complex fibrin matrix enhanced the proliferation of both HUVECs and primary human fibroblasts. HUVECs in the 3D γγ′F1:pFN fibrin exhibited a starkly enhanced vascular morphogenesis while an apoptotic growth profile was observed in the γγF1+pFN fibrin. Relative to γγF1+pFN fibrin, mouse dermal wounds that were sealed by γγ′F1:pFN fibrin exhibited accelerated and enhanced healing. This study suggests that a 3D pFN presentation on a fibrin matrix promotes wound healing.
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spelling pubmed-73343972020-07-14 Novel fibrin-fibronectin matrix accelerates mice skin wound healing Jara, Carlos Poblete Wang, Ou Paulino do Prado, Thais Ismail, Ayman Fabian, Frank Marco Li, Han Velloso, Licio A. Carlson, Mark A. Burgess, William Lei, Yuguo Velander, William H. Araújo, Eliana P. Bioact Mater Article Plasma fibrinogen (F1) and fibronectin (pFN) polymerize to form a fibrin clot that is both a hemostatic and provisional matrix for wound healing. About 90% of plasma F1 has a homodimeric pair of γ chains (γγF1), and 10% has a heterodimeric pair of γ and more acidic γ′ chains (γγ′F1). We have synthesized a novel fibrin matrix exclusively from a 1:1 (molar ratio) complex of γγ′F1 and pFN in the presence of highly active thrombin and recombinant Factor XIII (rFXIIIa). In this matrix, the fibrin nanofibers were decorated with pFN nanoclusters (termed γγ′F1:pFN fibrin). In contrast, fibrin made from 1:1 mixture of γγF1 and pFN formed a sporadic distribution of “pFN droplets” (termed γγF1+pFN fibrin). The γγ′F1:pFN fibrin enhanced the adhesion of primary human umbilical vein endothelium cells (HUVECs) relative to the γγF1+FN fibrin. Three dimensional (3D) culturing showed that the γγ′F1:pFN complex fibrin matrix enhanced the proliferation of both HUVECs and primary human fibroblasts. HUVECs in the 3D γγ′F1:pFN fibrin exhibited a starkly enhanced vascular morphogenesis while an apoptotic growth profile was observed in the γγF1+pFN fibrin. Relative to γγF1+pFN fibrin, mouse dermal wounds that were sealed by γγ′F1:pFN fibrin exhibited accelerated and enhanced healing. This study suggests that a 3D pFN presentation on a fibrin matrix promotes wound healing. KeAi Publishing 2020-07-01 /pmc/articles/PMC7334397/ /pubmed/32671290 http://dx.doi.org/10.1016/j.bioactmat.2020.06.015 Text en © 2020 Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Jara, Carlos Poblete
Wang, Ou
Paulino do Prado, Thais
Ismail, Ayman
Fabian, Frank Marco
Li, Han
Velloso, Licio A.
Carlson, Mark A.
Burgess, William
Lei, Yuguo
Velander, William H.
Araújo, Eliana P.
Novel fibrin-fibronectin matrix accelerates mice skin wound healing
title Novel fibrin-fibronectin matrix accelerates mice skin wound healing
title_full Novel fibrin-fibronectin matrix accelerates mice skin wound healing
title_fullStr Novel fibrin-fibronectin matrix accelerates mice skin wound healing
title_full_unstemmed Novel fibrin-fibronectin matrix accelerates mice skin wound healing
title_short Novel fibrin-fibronectin matrix accelerates mice skin wound healing
title_sort novel fibrin-fibronectin matrix accelerates mice skin wound healing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7334397/
https://www.ncbi.nlm.nih.gov/pubmed/32671290
http://dx.doi.org/10.1016/j.bioactmat.2020.06.015
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