Methods 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. Methods in iPSC Technology, Volume 9 addresses the different methods used for induced pluripotent stem cell (iPSC) formation, maintenance, expansion, and differentiation. The ability to reprogram different cell types to iPSCs offers an opportunity to generate pluripotent patient-specific cell lines that can help in the understanding of multiple human disorders. This volume addresses a variety of current methods used in the generation and manipulation of iPSCs, such as magnetic nanoparticles, piggyBac vectors, lentiviral vectors, bioscaffolds, somatic cell nuclear transfer, CRISPR/Cas9, bacteria, and much more. This volume is written for researchers and scientists interested in stem cell therapy, cell biology, regenerative medicine, and organ transplantation and is contributed by world-renowned authors in the field.

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  • Vægt720 g
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    10 cm
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    19,1 cm
    23,5 cm

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    Integration Regeneration Nanotechnology Ethics Scalability Differentiation Tissue engineering Bioreactors Adenoviruses Liver Stem cells Bioengineering Embryonic stem cells RNA editing Therapeutics Extracellular matrix Transfection Dissolved oxygen Endosymbiosis Gene Expression Regulation Regenerative Medicine Schwann Cells Nanomedicine Hepatocytes Induced Pluripotent Stem Cells Epigenetics society Personalized medicine Genetic Diseases Alzheimer's disease MicroRNA Precision Medicine Vector Perfusion Peripheral nerve injury Self-renewal Human pluripotent stem cells Lentiviral vectors Clinical application Genome editing MYC Expansion Stem Cell Engineering SOX Metaplasia Cell replacement therapy Stem cell Scaffolds Assisted reproductive techniques Cellular plasticity Biomanufacturing Therapeutic Biomaterials Transposon Small molecule Encapsulation Transposase Superparamagnetism Immunogenicity Transient Expression Magnetic field Aggregates Disease Modeling Cell reprogramming 3D printing Stem cell therapy Human embryonic stem cells Cell therapy Reproductive Recombinant protein Neuron IPS cells Hepatocyte Transgene Spinal cord injury Bioreactor Vector production Microenvironment Epigenome editing Feeder cells Demethylases Multipotent cells Dedifferentiation adeno-associated vectors Bacterial reprogramming CAF-1Cloning Base editor CRISPR/Cas9Disease modeling Double-stranded break repair Cell transplantation therapy Decellularization ePiggyBac Engineered tissues Episomal vector Core pluripotency transcription factor H3.3H3K27H3K4me3H3K9me3 demethylase Genome-integrating viral reprogramming method Hollow fiber bioreactors Hydrodynamic force Human induced pluripotent stem cell Human induced pluripotent stem cells-derived cardiomyocyte Human somatic cell nuclear transfer H1foo Induced pluripotent stem cell iPSCs production and differentiation Embryonic Stem Cell Metaphase-II egg Magnetofection Klf4macroH2A Gamma-retroviruses Magetic nanoparticles nonhomologous end joining Gene correction Oct4Oocyte Pioneer Transcription Factors piggyBac Human dermal fibroblast Programming module Organ engineering Reprogramming Factors Induced pluripotent stem cells (iPSCs)iPSCNT Guide RNA Reprogramming factor Prime editor SCNT Sodium Dodecyl Sulfate Sendai virus-based vectors Stem cell-like state Manufacturing practice Stable transduction Kdm4d Stem Cell Bioprocessing Induced pluripotent stem cells (iPSCs)Integrase-deficient lentiviral vectors Vertical-wheel bioreactors Xeno-free culture Triton X-100Vascularization Vector packaging Nonviral reprogramming method Metabolic reprogramming factor Microcarriers Nonintegrating viral reprogramming method Oocyte-specific factor Risk of insertional mutagenesis Recellularization Transient transduction Stirred suspension culture Skeletal muscle Synthetic mRNA

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