轴突引导
连合
神经科学
神经系统
奈特林
地板
类有机物
脊髓
轴突
生物
解剖
作者
Massimo M. Onesto,Neal D. Amin,Chenjie Pan,Xiaoyu Chen,Ji‐il Kim,Noah Reis,Sabina Kanton,Alfredo M. Valencia,Zuzana Hudáčová,James P. McQueen,Marc Tessier‐Lavigne,Sergiu P. Pașca
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-07-17
卷期号:389 (6757): 282-289
标识
DOI:10.1126/science.adq7934
摘要
Organizers orchestrate cell patterning and axon guidance in the developing nervous system. Although nonhuman models have led to fundamental discoveries about floor plate (FP)-mediated midline organization, an experimental model of the human FP would enable insights into human neurodevelopment and midline connectivity. Here, we developed organoids resembling human FP (hFpOs) and assembled them with human spinal cord organoids (hSpOs) to generate midline assembloids (hMAs). We demonstrate that hFpOs promote ventral patterning, commissural axon guidance, and bilateral connectivity. To investigate midline regulators, we profiled the hFpO secretome, identifying 27 human-enriched genes compared with mouse. In an arrayed CRISPR screen of hMAs, we discovered that loss of GALNT2 and PLD3 impaired FP-mediated guidance of axons. This platform holds promise for revealing aspects of human-specific neurobiology and disease.
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