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Current tissue engineering techniques typically incorporate imprecise scaffold geometries with random cell placement.
This review focuses on current tissue engineering strategies for promoting vascularized bone regeneration.
However, the diagnostic efficacy of current tissue sampling techniques appears to be limited.
The current tissue engineering paradigm is that successfully engineered thick tissues must include vasculature.
Current tissue engineering strategies begin with harvesting a small biopsy specimen from a patient.
Scaffolds designed in this way may overcome the high cost shortfalls of current tissue scaffolds.
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However current tissue-engineered scaffolds for chondrogenesis pay little attention to this phenomenon.
The abnormalities of bone formation present in osteoclast deficient animals are largely reflected in current tissue-engineered bone.
Current tissue-engineering approach using porous biodegradable scaffolds to delivery osteogenic cells and growth factors demonstrated success in facilitating bone regeneration in these cases.
This chapter will describe the special challenges posed by oral and maxillofacial reconstruction, outline existing reconstructive techniques and limitations, and review current tissue-engineering strategies that may be relevant.
In stark contrast to the complex microenvironment of the native dermal epidermal junction (DEJ), current tissue-engineered skin substitutes are commonly characterized by a flat interface at the DEJ.
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