iPSCs for Modeling Central Nervous System Disorders, Volume 6

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. iPSCs for Modeling Central Nervous System Disorders, Volume 6 addresses how induced pluripotent stem cells can be used to model various CNS disorders. Somatic cells can be reprogrammed into Induced pluripotent stem cells by the expression of specific transcription factors. These cells are transforming biomedical research in the last 15 years. The volume teaches readers about current advances in the field. This book describes the use of induced pluripotent stem cells to model several CNS diseases in vitro, enabling us to study the cellular and molecular mechanisms involved in different CNS pathologies. Further insights into these mechanisms will have important implications for our understanding of CNS disease appearance, development, and progression. In recent years, remarkable progress has been made in the obtention of induced pluripotent stem cells and their differentiation into several cell types, tissues and organs using state-of-art techniques. These advantages facilitated identification of key targets and definition of the molecular basis of several CNS disorders. This volume will cover what we know so far about the use of iPSCs to model different CNS disorders, such as: Alzheimer’s disease, Autism, Amyotrophic Lateral Sclerosis, Schizophrenia, Fragile X Syndrome, Spinal Muscular Atrophy, Rett Syndrome, Angelman syndrome, Parkinson`s Disease, Leber Hereditary Optic Neuropathy, Anorexia Nervosa, and more. The volume is written for researchers and scientists interested in stem cell therapy, cell biology, regenerative medicine, and neuroscience; and is contributed by world-renowned authors in the field.

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Detaljer
  • SprogEngelsk
  • Sidetal352
  • Udgivelsesdato30-04-2021
  • ISBN139780323857642
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt720 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Anorexia nervosa Clinical trials Gene expression. Genetics Differentiation Hypothalamus Parkinson's disease Dendrites Rett syndrome Neurons Electrophysiology Quality control Motor neurons Fragile X syndrome Genomic imprinting Pathogenesis Blood-brain barrier Cerebellum Oxidative stress Extracellular matrix Amyotrophic lateral sclerosis Pharmacogenetics Dopaminergic neurons Drug Screening Endothelial Cells Hippocampus Seizures DNA Methylation Astrocytes Autism spectrum disorders Induced Pluripotent Stem Cells Epigenetics Neurogenesis Alzheimer's disease Reactive Oxygen Species Neurodevelopmental Disorders Organoids Endothelial Reprogramming Pericytes IPSCs Genome editing Neuroinflammation Neurodevelopmental Neurodevelopment Neuro-inflammation Food intake Neuromuscular junction Endoplasmic reticulum stress Fibroblast E3 ubiquitin ligase Glial cells Cortex Heteroplasmy Mouse models Astrocyte Aggregates Angelman syndrome Disease Modeling Neurodegeneration Human embryonic stem cells Cell therapy Organ-on-chip Mitochondrial Dysfunction Neuronal differentiation Direct conversion Mitochondrial function Mitochondrial disease Neurone Epigenetic modifications Activity-dependent development Amyloid ßAPOE4Astrocytes Anti-sense oligonucleotides (ASOs)Brain organoids autosomal recessive Brain imaging studies CDKL5Cerebral organoid a-synuclein Brain organoids Brain organoid Cybrid cell e:keyword id="kwrd0045">LRRK2Microglia Copy number variants (CNVs) cohort Cortical neurons FOXG1iPSCs human brain Idiopathic cohort Incomplete penetrance Induced pluripotent stem cells (iPSCs)Topotecan Induced pluripotent stem cells (iPSCs)Microglia Induced pluripotent stem cell In-vitro neuronal differentiation Electrophysiology differentiation Familial cohort MECP2Microcephaly Microelectrode Arrays Lineage reprogramming FMR1FMRP NT2.D1Pentapartitesynapse Homoplasmy Post-mortem brain studies Induced pluripotent stem cell (iPSCs)miRNA dysregulation Induce pluripotent stem cells In vitro methylation Schizophrenia (SCZ)Synapse dysfunction Spiny projection neurons Survival of motor neuron-2Synaptic dysregulation Reward Processing Hyperexcitability Idiopathic autism TREM2Tripartite Intron retention Midbrain organoid Neurofibrillary Tangles Mitochondrial complex I MT–ND1MT–ND4MT-ND6Peripheral blood mononuclear cell Neural phenotypes Non–cell-autonomous mechanism Retinal Ganglion Cell Synaptic function UBE3A. SNHG14Voltage-dependent big potassium channels (BK)X-linked Survival of motor neuron-1Spinal muscular atrophy Syndromic autism TATA-box binding protein-associated factor 1 (TAF1)Therapeutic strategy

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