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Self-organization of human dorsal-ventral forebrain structures by light induced SHH

Author

Listed:
  • Riccardo De Santis

    (The Rockefeller University)

  • Fred Etoc

    (The Rockefeller University)

  • Edwin A. Rosado-Olivieri

    (The Rockefeller University)

  • Ali H. Brivanlou

    (The Rockefeller University)

Abstract

Organizing centers secrete morphogens that specify the emergence of germ layers and the establishment of the body’s axes during embryogenesis. While traditional experimental embryology tools have been instrumental in dissecting the molecular aspects of organizers in model systems, they are impractical in human in-vitro model systems to dissect the relationships between signaling and fate along embryonic coordinates. To systematically study human embryonic organizer centers, we devised a collection of optogenetic ePiggyBac vectors to express a photoactivatable Cre-loxP recombinase, that allows the systematic induction of organizer structures by shining blue-light on human embryonic stem cells (hESCs). We used a light stimulus to geometrically confine SHH expression in neuralizing hESCs. This led to the self-organization of mediolateral neural patterns. scRNA-seq analysis established that these structures represent the dorsal-ventral forebrain, at the end of the first month of development. Here, we show that morphogen light-stimulation is a scalable tool that induces self-organizing centers.

Suggested Citation

  • Riccardo De Santis & Fred Etoc & Edwin A. Rosado-Olivieri & Ali H. Brivanlou, 2021. "Self-organization of human dorsal-ventral forebrain structures by light induced SHH," Nature Communications, Nature, vol. 12(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-021-26881-w
    DOI: 10.1038/s41467-021-26881-w
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    References listed on IDEAS

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    3. Xin Zhou & Suijuan Zhong & Honghai Peng & Jing Liu & Wenyu Ding & Le Sun & Qiang Ma & Zeyuan Liu & Ruiguo Chen & Qian Wu & Xiaoqun Wang, 2020. "Cellular and molecular properties of neural progenitors in the developing mammalian hypothalamus," Nature Communications, Nature, vol. 11(1), pages 1-16, December.
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