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Human neuron subtype programming via single-cell transcriptome-coupled patterning screens

delete2025-07-10
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PRE
AI
H
Hsiu‐Chuan Lin
J
Jasper Janssens
B
Benedikt Eisinger
P
Philipp Hornauer
A
Ann-Sophie Helene Kroell
M
Małgorzata Santel
M
M. Pascual-García
R
Ryoko Okamoto
K
Kyriaki Karava
Z
Zhisong He
M
Marthe Priouret
M
Manuel Schröter
J
J. Gray Camp *
B
Barbara Treutlein *
DOI:10.1126/science.adn6121delete
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Abstract

Abstract

En 中文
The use of human induced pluripotent stem cells to generate induced neurons is used in a broad range of neuroscience studies, from disease modeling to drug screening. However, replicating the large heterogeneity of human neurons is challenging. Lin et al. performed a systematic screening of 480 morphogen combinations coupled with overexpression of one of two different transcription factors to generate a library of induced neurons successively analyzed using single-cell RNA sequencing. The authors identified a broad range of neuronal subtypes and mapped them along the anterior-posterior and dorsal-ventral axes of neural tube development. The results provide a valuable resource for engineering human neurons. —Mattia Maroso

Journal

Science cover
Science
IF:
45.8
Papers:
1.4W
Citations:
78.6W

Organization

D
Department of Biosystems Science and Engineering
Scholars:
95
Papers: 34
Citations: 0
R
roche innovation center basel
Scholars:
253
Papers: 70
Citations: 1