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Titlebook: Osteochondral Tissue Engineering; Nanotechnology, Scaf J. Miguel Oliveira,Sandra Pina,Julio San Roman Book 2018 Springer International Publ

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Synthetic Materials for Osteochondral Tissue Engineeringintelligent materials with high biocompatibility to suit 4D printing technology. As various researchers and tissue engineers have demonstrated, the role of growth factors in tissue engineering for repairing osteochondral and cartilage defects is a very important one. Following animal testing, cell-a
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Bioceramics for Osteochondral Tissue Engineering and Regenerationnd biological properties, as well as bioceramics applications in diverse fields of tissue engineering are presented herein. Ongoing clinical trials using bioceramics in osteochondral tissue are also considered. Based on the stringent requirements for clinical applications, prospects for the developm
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Layered Scaffolds for Osteochondral Tissue Engineeringaches have been thoroughly studied aiming at functional OC regeneration. The most noteworthy studies in OC regeneration developed within the past 5 years are herein documented as well as some current clinical trials.
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Supercritical Fluid Technology as a Tool to Prepare Gradient Multifunctional Architectures Towards Rn the PL pool, followed by supercritical drying of the samples. Furthermore gradient structures of PL-based structures with bioactive glass are also presented and are described as an interesting approach to the treatment of osteochondral defects.
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Gellan Gum-Based Hydrogels for Osteochondral Repairrtilage regeneration has been demonstrated. This chapter provides an overview of GG properties and the functionalization strategies employed to tailor its behaviour to a particular application. The use of GG in soft and hard tissues regeneration approaches, as well in osteochondral integrated TE str
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