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Citations to this article

Human-derived neural progenitors functionally replace astrocytes in adult mice
Hong Chen, … , Melvin Ayala, Su-Chun Zhang
Hong Chen, … , Melvin Ayala, Su-Chun Zhang
Published February 2, 2015
Citation Information: J Clin Invest. 2015;125(3):1033-1042. https://doi.org/10.1172/JCI69097.
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Technical Advance Neuroscience Article has an altmetric score of 11

Human-derived neural progenitors functionally replace astrocytes in adult mice

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Abstract

Astrocytes are integral components of the homeostatic neural network as well as active participants in pathogenesis of and recovery from nearly all neurological conditions. Evolutionarily, compared with lower vertebrates and nonhuman primates, humans have an increased astrocyte-to-neuron ratio; however, a lack of effective models has hindered the study of the complex roles of human astrocytes in intact adult animals. Here, we demonstrated that after transplantation into the cervical spinal cords of adult mice with severe combined immunodeficiency (SCID), human pluripotent stem cell–derived (PSC-derived) neural progenitors migrate a long distance and differentiate to astrocytes that nearly replace their mouse counterparts over a 9-month period. The human PSC-derived astrocytes formed networks through their processes, encircled endogenous neurons, and extended end feet that wrapped around blood vessels without altering locomotion behaviors, suggesting structural, and potentially functional, integration into the adult mouse spinal cord. Furthermore, in SCID mice transplanted with neural progenitors derived from induced PSCs from patients with ALS, astrocytes were generated and distributed to a similar degree as that seen in mice transplanted with healthy progenitors; however, these mice exhibited motor deficit, highlighting functional integration of the human-derived astrocytes. Together, these results indicate that this chimeric animal model has potential for further investigating the roles of human astrocytes in disease pathogenesis and repair.

Authors

Hong Chen, Kun Qian, Wei Chen, Baoyang Hu, Lisle W. Blackbourn IV, Zhongwei Du, Lixiang Ma, Huisheng Liu, Karla M. Knobel, Melvin Ayala, Su-Chun Zhang

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 Total
Citations: 3 4 8 2 5 7 1 10 5 3 48
Citation information
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Citations to this article (48)

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Cell transplantation 2024
Astrocyte-Neuron Interactions Contributing to Amyotrophic Lateral Sclerosis Progression.
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Advances in neurobiology 2024
Astrocyte-Mediated Neuroinflammation in Neurological Conditions.
Zhao Y, Huang Y, Cao Y, Yang J
Biomolecules 2024
Human spinal GABA neurons survive and mature in the injured nonhuman primate spinal cord
Zheng X, Zhu B, Xu J, Liu D, Huang Y, Chen D, Liu Z, Guo F, Dong Y, Zhu W, Pan D, Zhang SC, Chen H, Wang W
Stem Cell Reports 2023
Cortical Astrocyte Progenitors and Astrocytes from Human Pluripotent Stem Cells
Battistella I, Cutarelli A, Zasso J, Clerici M, Sala C, Marcatili M, Conti L
Journal of Personalized Medicine 2023
Astrocytes: Dissecting Their Diverse Roles in Amyotrophic Lateral Sclerosis and Frontotemporal Dementia
Valori CF, Sulmona C, Brambilla L, Rossi D
Cells 2023
Preclinical long-term safety of intraspinal transplantation of human dorsal spinal GABA neural progenitor cells
Zheng X, Liu Z, He Z, Xu J, Wang Y, Gong C, Zhang R, Zhang SC, Chen H, Wang W
iScience 2023
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NR1D1 down-regulation in astrocytes induces a phenotype that is detrimental to co-cultured motor neurons
Killoy KM, Harlan BA, Pehar M, Vargas MR
The FASEB Journal 2022
Therapeutic Potential of Astrocyte Transplantation
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P Preman, J TCW, S Calafate, A Snellinx, M Alfonso-Triguero, N Corthout, S Munck, DR Thal, AM Goate, BD Strooper, AM Arranz
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Exciting Complexity: The Role of Motor Circuit Elements in ALS Pathophysiology
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Frontiers in neuroscience 2020
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Human iPSC-derived mature microglia retain their identity and functionally integrate in the chimeric mouse brain
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Stem Cells 2019
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MA Ajmone-Cat, A Onori, C Toselli, E Stronati, M Morlando, I Bozzoni, E Monni, Z Kokaia, G Lupo, L Minghetti, S Biagioni, E Cacci
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