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Titlebook: Cell Engineering and Regeneration; Jeffrey M. Gimble,Darja Marolt Presen,Heinz Redl Living reference work 20200th edition Adipose Derived

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Hard Material Modulation for (Skeletal) Tissue Engineering Purposes,ored properties. In this chapter, we present the main existing strategies to customize 3D material properties toward optimized tissue regeneration. The possibility to tune the composition/architecture as well as to functionalize materials with bioactive elements will be discussed.
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Biological Augmentation for Tendon Repair: Lessons to be Learned from Development, Disease, and Tengeneral view on tendon structure. It further gives an overview of tendon development and the cellular and molecular events underlying tendon aging. Finally, we will close the chapter by briefly outlining current strategies to augment tendon repair, aiming at reaching the ambitious goal of functional tendon regeneration.
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Cells for Cartilage Regeneration,ferred method depends on the location of the cartilage defect, whether it is the nose, the ear, the airway, or a certain site in the joint. Different cell types with chondrogenic capacities are being used for cartilage regeneration. In this chapter we discuss the expansion in culture, the chondrogen
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Pancreatic Islet Beta-Cell Replacement Strategies, during progression to type 1 diabetes. Then we focus on strategies designed to promote replacement of pancreatic β-cells, either by whole pancreas or islet transplantation from cadaveric donors. In addition, approaches to engineer large populations of β-cells from embryonic or induced pluripotent s
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Periosteum Derived Cells in Skeletal Tissue Regeneration,nd their role in bone fracture healing. Specifically, progenitor cells residing within the periosteum have been shown to be crucial for bone regeneration. Importantly, this is not a phenomenon performed by one common progenitor cell, instead, distinct skeletal progenitor cell populations have been i
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