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Isolation and Osteogenic Differentiation of Bone-Marrow Progenitor Cells for Application in Tissue Engineering

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One of the most widely studied bone-tissue engineering approaches involves the seeding and extended in vitro culturing of cells within a biodegradable scaffold prior to implantation. The bioresorbable scaffold must be biocompatible and porous in order to facilitate rapid vascularization and growth of newly formed tissue (1 8 ). During the in vitro culture period, the seeded cells proliferate and secrete tissue-specific extracellular matrix (ECM). The selection of the scaffold material, which should exhibit an adequate three-dimensional (3D) porous structure, is a primary consideration in matrix- and cell-based bone-tissue engineering strategies (9 ).
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