Molecular Players in iPSC Technology

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

The series Advances in Stem Cell Biology is a timely and expansive collection of comprehensive information and new discoveries in the field of stem cell biology.Molecular Players in iPSC Technology, Volume 12 addresses the molecular players underlying induced pluripotent stem cell (iPSC) generation, maintenance, expansion, and differentiation. The discovery of iPSCs revolutionized biomedical research. iPSC technology involves multiple molecular mechanisms. This volume covers exosomal microRNAs, auxiliary pluripotency-associated genes, inducible caspase-9 suicide gene, cell cycle proteins, ion channels, Notch signaling, kinase signaling, SOCS3/JAK2/STAT3 pathway, NANOG, Krüppel-like factors, H1FOO, and much more in iPSCs. The volume is written for researchers and scientists in stem cell therapy, cellular and molecular biology, and regenerative medicine and is contributed by world-renowned authors in the field.

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Detaljer
  • SprogEngelsk
  • Sidetal436
  • Udgivelsesdato06-09-2021
  • ISBN139780323900591
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Cancer Genetics Action Potentials Differentiation Ultracentrifugation Electrophysiology Cell biology Embryonic Development Stem cells Embryonic stem cells Methylation Cell differentiation Drug Screening DNA Methylation Proliferation Fibroblast Growth Factor Induced Pluripotent Stem Cells Mesenchymal stem cells Pluripotent Stem Cells Epigenetics MicroRNA Exosomes Reprogramming Embryo development IPSCs T-cell therapy Cardiomyocytes Notch ESCs Chromatin remodeling Histone modifications Growth factor Intracellular signaling Notch Signaling Chemokine Ligand Epicardium Depolarization Disease Modeling Cell reprogramming Noncoding RNAs Cell therapy EMT Cytokine Viral vectors Oocyte Small molecules Wnt signaling Pluripotency Maturation Gene regulation Receptor MET Endosomal Sorting Complexes Required for Transport Stemness Neurogenic ActivinA/Nodal signaling Adipogenic Atrial Myocytes Barriers or enhancers of reprogramming Cardiac Differentiation CDK1CDK2CDK4Cell cycle regulation CDK/Cyclin CIP/KIP Chromatin decondensation Cell Fate Commitment Cyclin D1Differentiation cytotoxic T lymphocytes BMP signaling Canonical pathway Calcium current Cardiovascular differentiation Endogenous expression ERK signaling Chimeric antigen receptor T cells EV biogenesis Chimeric mouse Esrrb Foxh1Glis1Induced pluripotent stem cells EV cargo Engineering Extracellular vesicles (EV)Mesenchymal stem cells hPSCs Deacetylation Imprinted gene Kat6b JMJD Induced pluripotency Embryoid body (EB)H1foo Ion channel currents Exo-miRNA sorting EV heterogeneity FGF signaling Oct4Partially reprogrammed cells Nr5a2Reprogramming factors Ground state pluripotency Nanog Osteogenic OCT4p53Pluripotent stem cells Pluripotency gene Induced pluripotent stem cell (iPSC)Linker histone Inducible caspase-9“Off-the-shelf” INK/Arf Potassium current Rejuvenated T cells Reprogramming factor SOCS3STAT3Sodium current Rex1Sall4Tbx3Thomson factors JAK2m6A methylation Somatic cell nuclear transfer (SCNT)Somatic reprogramming Super-enhancer trans-differentiation Yamanaka factor Leukemia inhibitory factor Virus-specific CTLs L-Myc Neuregulin/ErbB signaling p21p53Reprogramming factors Pluripotency transcription factors Repolarization Reprogramming roadblocks Suicide-gene-based safeguard system Ventricular myocytes SAN pacemaker cells Transcription network Self-renew T-iPSCs Sox2X chromosome Transcriptional network Utf1Yamanaka factors Zic3Zscan4

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