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Titlebook: Stem Cells and Tissue Repair; Methods and Protocol Chrissa Kioussi Book 2014 Springer Science+Business Media New York 2014 mouse embryonic

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Whole-Mount Immunohistochemistry to Study Spermatogonial Stem Cells and Spermatogenic Lineage Devel intracellular bridges. Clone size is generally related to stem cell potential, with shorter chains containing the majority of the stem cell population. Immunofluorescence detection of spermatogonia-specific proteins in whole-mount seminiferous tubule preparations is the only method that allows rese
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Differentiating the Stem Cell Pool of Human Hair Follicle Outer Root Sheath into Functional Melanoceader. This is particularly important in autologous treatments, which use one’s bodily constituents for therapy. Precisely the stretch between obtaining therapeutic elements invasively and noninvasively places non-intrusive “sampling” rather than “biopsy” in the center of the road map of developing
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Ultra-rapid Manufacturing of Engineered Epicardial Substitute to Regenerate Cardiac Tissue Followins that can restore the structure and function of the damaged cardiac tissue. The success of cardiac regenerative therapies has been limited mainly due to poor control on the structure and properties of the tissue substitute, lack of vascularization, and immunogenicity. In this study we introduce a n
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The Generation and Maintenance of Rat Induced Pluripotent Stem Cells, rat embryonic fibroblast (REF). Finally, the protocols for the optimal culture conditions of riPSCs and preparation of frozen stock are described. We also outline the advantages of generating riPSCs.
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Whole-Mount Immunohistochemistry to Study Spermatogonial Stem Cells and Spermatogenic Lineage Develarchers to relate clone size with the molecular phenotype in spermatogenic lineage development. Here we describe in detail the method used to detect nuclear, cytoplasmic, and cell surface molecules in seminiferous tubules isolated from mouse, monkey, and human testes.
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Generation of Murine Xenograft Models of Brain Tumors from Primary Human Tissue for In Vivo Analysixenograft model allows for careful characterization of BTIC roles in tumor initiation, growth, and relapse. Here, we detail a set of procedures which describe the isolation, enrichment, and intracranial injection of human BTICs from patient samples to generate xenograft models of a human brain tumor.
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