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Titlebook: Regenerative Medicine and Stem Cell Biology; Nagwa El-Badri Textbook 2020 Springer Nature Switzerland AG 2020 Stem cells.Regenerative medi

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Epigenetics in Stem Cell Biology,modifications include histone modifications, DNA methylation, and interactions with non-coding RNAs. In this chapter, you will learn how epigenetic modifications control the development, proliferation, and self-renewal of stem cells, and how these modifications also play important roles in cell fate
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Isolation of Bone Marrow and Adipose-Derived Mesenchymal Stromal Cells,ry. The chapter provides a common protocol for isolation of two important types of MSCs, collected from the adipose tissue and bone marrow. The protocol for isolation of stem cells and primary cell culture of bone marrow and adipose tissue from Sprague-Dawley rats will concurrently cover common cell
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In Vitro Methods for Generating Induced Pluripotent Stem Cells,ripotent cells with higher differentiation potential from somatic cells has opened the door for substantial advances in personalized medicine and regenerative medicine applications. You will also learn the basics of inducing pluripotent stem cells from somatic cells and the different factors affecti
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Tissue Engineering Modalities and Nanotechnology,ucture of the native tissues and organs. You will learn the most suitable cell type or a combination of cells that can build up the tissue and incorporate them into natural or synthetic scaffolds. The chapter will cover current advances in 3D printing technology and nanomaterials, and the important
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Scaffold Engineering Using the Amniotic Membrane,es of hAM stem cells and their characteristics and functions. Furthermore, the chapter illustrates the differences between using an intact or decellularized hAM as a natural bioscaffold for tissue engineering. The development of the hAM as a three-dimensional (3D) cultural system is then explained a
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