In vitro analog of human bone marrow from 3D scaffolds with biomimetic inverted colloidal crystal geometry

Abstract In vitro replicas of bone marrow can potentially provide a continuous source of blood cells for transplantation and serve as a laboratory model to examine human immune system dysfunctions and drug toxicology. Here we report the development of an in vitro artificial bone marrow based on a 3D...

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Veröffentlicht in:Biomaterials 2009-02, Vol.30 (6), p.1071-1079
Hauptverfasser: Nichols, Joan E, Cortiella, Joaquin, Lee, Jungwoo, Niles, Jean A, Cuddihy, Meghan, Wang, Shaopeng, Bielitzki, Joseph, Cantu, Andrea, Mlcak, Ron, Valdivia, Esther, Yancy, Ryan, McClure, Matthew L, Kotov, Nicholas A
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Sprache:eng
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Zusammenfassung:Abstract In vitro replicas of bone marrow can potentially provide a continuous source of blood cells for transplantation and serve as a laboratory model to examine human immune system dysfunctions and drug toxicology. Here we report the development of an in vitro artificial bone marrow based on a 3D scaffold with inverted colloidal crystal (ICC) geometry mimicking the structural topology of actual bone marrow matrix. To facilitate adhesion of cells, scaffolds were coated with a layer of transparent nanocomposite. After seeding with hematopoietic stem cells (HSCs), ICC scaffolds were capable of supporting expansion of CD34+ HSCs with B-lymphocyte differentiation. Three-dimensional organization was shown to be critical for production of B cells and antigen-specific antibodies. Functionality of bone marrow constructs was confirmed by implantation of matrices containing human CD34+ cells onto the backs of severe combined immunodeficiency (SCID) mice with subsequent generation of human immune cells.
ISSN:0142-9612
1878-5905
DOI:10.1016/j.biomaterials.2008.10.041