Literature DB >> 25575540

Programmable 3D silk bone marrow niche for platelet generation ex vivo and modeling of megakaryopoiesis pathologies.

Christian A Di Buduo1, Lindsay S Wray2, Lorenzo Tozzi2, Alessandro Malara1, Ying Chen3, Chiara E Ghezzi3, Daniel Smoot3, Carla Sfara4, Antonella Antonelli4, Elise Spedden5, Giovanna Bruni6, Cristian Staii5, Luigi De Marco7, Mauro Magnani4, David L Kaplan3, Alessandra Balduini2.   

Abstract

We present a programmable bioengineered 3-dimensional silk-based bone marrow niche tissue system that successfully mimics the physiology of human bone marrow environment allowing us to manufacture functional human platelets ex vivo. Using stem/progenitor cells, megakaryocyte function and platelet generation were recorded in response to variations in extracellular matrix components, surface topography, stiffness, coculture with endothelial cells, and shear forces. Millions of human platelets were produced and showed to be functional based on multiple activation tests. Using adult hematopoietic progenitor cells our system demonstrated the ability to reproduce key steps of thrombopoiesis, including alterations observed in diseased states. A critical feature of the system is the use of natural silk protein biomaterial allowing us to leverage its biocompatibility, nonthrombogenic features, programmable mechanical properties, and surface binding of cytokines, extracellular matrix components, and endothelial-derived proteins. This in turn offers new opportunities for the study of blood component production ex vivo and provides a superior tissue system for the study of pathologic mechanisms of human platelet production.
© 2015 by The American Society of Hematology.

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Year:  2015        PMID: 25575540      PMCID: PMC4383799          DOI: 10.1182/blood-2014-08-595561

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  59 in total

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