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In adults, they are essential for tissue repair.
Characterization and control of mechanical properties of reconstituted tissues are essential for tissue engineering applications.
Mobilization and recruitment of these cells are essential for tissue revascularization.
In orthopedic and trauma surgery however, protein and cellular adhesion are essential for tissue integration and consequently the clinical outcome.
Although DSCs are essential for tissue maintenance and repair, accurate determination of their numbers for medical applications has been problematic.
Migration of stem cells to the affected site and promotion of vascularization are essential for tissue engineering therapy, including bone regeneration.
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Precise control over scaffold material, porosity, and internal pore architecture is essential for tissue engineering.
The identification of appropriate cell sources is essential for tissue regeneration.
Understanding the fundamental process of musculoskeletal development is essential for tissue engineers to develop a more effective approach for regeneration.
Precise control over the biomaterial, porosity, and inner architecture of a scaffold is essential for tissue regeneration.
In addition to nutrients and systemic in situ interactions, the 3 main components believed to be essential for tissue regeneration are stem cells, scaffold, and growth factors.
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