Use el DOI o este identificador para enlazar este recurso: http://ru.facmed.unam.mx/jspui/handle/FACMED_UNAM/A107
Título : Differential adhesion and fibrinolytic activity of mesenchymal stem cells from human bone marrow, placenta, and Wharton’s jelly cultured in a fibrin hydrogel.
Autor(es) : Chaires Rosas, Casandra Paulina
Ambriz Peña, Xochitl
Montesinos Montesinos, Juan Jose
Hernandez Tellez, Beatriz
Piñon Zarate, Gabriela
Herrera Enriquez, Miguel Angel
Hernandez Estevez, Erika Ayde
Ambrosio Hernandez, Javier Rolando
Castell Rodriguez, Andres Eliu
En : Journal of Tissue Engineering (2041-7314) Vol. 10, 1-17 (2019)
Número completo : https://journals.sagepub.com/toc/teja/10
Abstract : Mesenchymal stem cells isolated from different tissues should share associated markers and the capability to differentiate to mesodermal lineages. However, their behavior varies in specific microenvironments. Herein, adhesion and fibrinolytic activity of mesenchymal stem cells from placenta, bone marrow, and Wharton’s jelly were evaluated in fibrin hydrogels prepared with nonpurified blood plasma and compared with two-dimensional cultures. Despite the source, mesenchymal stem cells adhered through focal adhesions positive for vinculin and integrin ?V in two dimensions, while focal adhesions could not be detected in fibrin hydrogels. Moreover, some cells could not spread and stay rounded. The proportions of elongated and round phenotypes varied, with placenta mesenchymal stem cells having the lowest percentage of elongated cells (~10%). Mesenchymal stem cells degraded fibrin at distinct rates, and placenta mesenchymal stem cells had the strongest fibrinolytic activity, which was achieved principally through the plasminogen–plasmin axis. These findings might have clinical implications in tissue engineering and wound healing therapy.
Palabras clave : Células troncales mesenquimales humanas
Fibrina
Adhesión
Fibrinólisis
Fecha de publicación : 2019
DOI : 10.1177/2041731419840622
URI : http://ru.facmed.unam.mx/jspui/handle/FACMED_UNAM/A107
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