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Table of Contents
Chapter 1: Heparan Sulfate Proteoglycans in the Stem Cell Niche: Lessons from Drosophila
Chapter 2: Proteoglycans in zebrafish development
Chapter 3: The pivotal role of versican turnover by ADAMTS proteases in mammalian reproduction and development
Chapter 4: Use of chondroitin sulfate to aid in vitro stem cell differentiation
Chapter 5: Regulatory functions of heparan sulfate in stem cell self-renewal and differentiation
Chapter 6: Proteoglycans as mediators of neurogenesis and stem cell differentiation
Chapter 7: Syndecan-3: a signaling conductor in the musculoskeletal system
Chapter 8: Proteoglycans of the neural stem cell niche
Chapter 9: Heparan sulfate in normal and cancer stem cells of the brain
Chapter 10: Hyaluronic acid-CD44 interaction in the physio- and pathological stem cell niche
Chapter 11: Proteoglycans in glioma stem cells
Chapter 12: Role of Syndecan-1 in Cancer Stem cells.
Chapter 2: Proteoglycans in zebrafish development
Chapter 3: The pivotal role of versican turnover by ADAMTS proteases in mammalian reproduction and development
Chapter 4: Use of chondroitin sulfate to aid in vitro stem cell differentiation
Chapter 5: Regulatory functions of heparan sulfate in stem cell self-renewal and differentiation
Chapter 6: Proteoglycans as mediators of neurogenesis and stem cell differentiation
Chapter 7: Syndecan-3: a signaling conductor in the musculoskeletal system
Chapter 8: Proteoglycans of the neural stem cell niche
Chapter 9: Heparan sulfate in normal and cancer stem cells of the brain
Chapter 10: Hyaluronic acid-CD44 interaction in the physio- and pathological stem cell niche
Chapter 11: Proteoglycans in glioma stem cells
Chapter 12: Role of Syndecan-1 in Cancer Stem cells.