Literature DB >> 27882348

Humanized neuronal chimeric mouse brain generated by neonatally engrafted human iPSC-derived primitive neural progenitor cells.

Chen Chen1, Woo-Yang Kim1, Peng Jiang1,2.   

Abstract

The creation of a humanized chimeric mouse nervous system permits the study of human neural development and disease pathogenesis using human cells in vivo. Humanized glial chimeric mice with the brain and spinal cord being colonized by human glial cells have been successfully generated. However, generation of humanized chimeric mouse brains repopulated by human neurons to possess a high degree of chimerism have not been well studied. Here we created humanized neuronal chimeric mouse brains by neonatally engrafting the distinct and highly neurogenic human induced pluripotent stem cell (hiPSC)-derived rosette-type primitive neural progenitors. These neural progenitors predominantly differentiate to neurons, which disperse widely throughout the mouse brain with infiltration of the cerebral cortex and hippocampus at 6 and 13 months after transplantation. Building upon the hiPSC technology, we propose that this potentially unique humanized neuronal chimeric mouse model will provide profound opportunities to define the structure, function, and plasticity of neural networks containing human neurons derived from a broad variety of neurological disorders.

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Mesh:

Year:  2016        PMID: 27882348      PMCID: PMC5111502          DOI: 10.1172/jci.insight.88632

Source DB:  PubMed          Journal:  JCI Insight        ISSN: 2379-3708


  44 in total

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4.  Functional engraftment of human ES cell-derived dopaminergic neurons enriched by coculture with telomerase-immortalized midbrain astrocytes.

Authors:  Neeta S Roy; Carine Cleren; Shashi K Singh; Lichuan Yang; M Flint Beal; Steven A Goldman
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Authors:  Maria C Marchetto; Kristen J Brennand; Leah F Boyer; Fred H Gage
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Review 9.  Stem cell pluripotency and transcription factor Oct4.

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10.  Functional integration of human neural precursor cells in mouse cortex.

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  11 in total

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2.  OLIG2 Drives Abnormal Neurodevelopmental Phenotypes in Human iPSC-Based Organoid and Chimeric Mouse Models of Down Syndrome.

Authors:  Ranjie Xu; Andrew T Brawner; Shenglan Li; Jing-Jing Liu; Hyosung Kim; Haipeng Xue; Zhiping P Pang; Woo-Yang Kim; Ronald P Hart; Ying Liu; Peng Jiang
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Review 3.  Multi-lineage Human iPSC-Derived Platforms for Disease Modeling and Drug Discovery.

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Journal:  Cell Stem Cell       Date:  2020-03-05       Impact factor: 24.633

Review 4.  Uses for humanised mouse models in precision medicine for neurodegenerative disease.

Authors:  Remya R Nair; Silvia Corrochano; Samanta Gasco; Charlotte Tibbit; David Thompson; Cheryl Maduro; Zeinab Ali; Pietro Fratta; Abraham Acevedo Arozena; Thomas J Cunningham; Elizabeth M C Fisher
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5.  Immune-tolerance to human iPS-derived neural progenitors xenografted into the immature cerebellum is overridden by species-specific differences in differentiation timing.

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6.  Generation of human pluripotent stem cell-derived fused organoids with oligodendroglia and myelin.

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7.  Rise of the human-mouse chimeric brain models.

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8.  Zika Virus with Increased CpG Dinucleotide Frequencies Shows Oncolytic Activity in Glioblastoma Stem Cells.

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9.  Human iPSC-derived mature microglia retain their identity and functionally integrate in the chimeric mouse brain.

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Journal:  Nat Commun       Date:  2020-03-27       Impact factor: 14.919

Review 10.  Assessing behavior and cognition in rodents, nonhuman primates, and humans: where are the limits of translation?
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Authors:  Marius Stephan; Paul Volkmann; Moritz J Rossner
Journal:  Dialogues Clin Neurosci       Date:  2019-09       Impact factor: 5.986

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