Xu Lei, Zhang Yufan, Chen Xingyi, Hong Yuan, Zhang Xu, Hu Hao, Han Xiao, Zou Xiao, Xu Min, Zhu Wanying, Liu Yan
State Key Laboratory of Digital Medical Engineering, School of Biological Science and Medical Engineering, Department of Neurology, Affiliated Zhongda Hospital, Southeast University, Nanjing, China.
Institute of Stem Cell and Neural Regeneration, School of Pharmacy, Nanjing Medical University, Nanjing, China.
Cell Prolif. 2025 Feb;58(2):e13777. doi: 10.1111/cpr.13777. Epub 2024 Dec 12.
The developing human foetal brain is sensitive to thermal stimulation during pregnancy. However, the mechanisms by which heat exposure affects human foetal brain development remain unclear, largely due to the lack of appropriate research models for studying thermal stimulation. To address this, we have developed a periodic heating model based on brain organoids derived from human pluripotent stem cells. The model recapitulated neurodevelopmental disruptions under prenatal heat exposure at the early stages, providing a paradigm for studying the altered neurodevelopment under environmental stimulation. Our study found that periodic heat exposure led to decreased size and impaired neural tube development in the brain organoids. Bulk RNA-seq analysis revealed that the abnormal WNT signalling pathway and the reduction of G2/M progenitor cells might be involved in heat stimulation. Further investigation revealed increased neural differentiation and decreased proliferation under heat stimulation, indicating that periodic heat exposure might lead to abnormal brain development by altering key developmental processes. Hence, our model of periodically heating brain organoids provides a platform for modelling the effects of maternal fever on foetal brain development and could be extended to applications in neurodevelopmental disorders intervention.
发育中的人类胎儿大脑在孕期对热刺激敏感。然而,热暴露影响人类胎儿大脑发育的机制仍不清楚,这主要是由于缺乏用于研究热刺激的合适研究模型。为了解决这一问题,我们基于源自人类多能干细胞的脑类器官开发了一种周期性加热模型。该模型在早期重现了产前热暴露下的神经发育破坏,为研究环境刺激下神经发育改变提供了一个范例。我们的研究发现,周期性热暴露导致脑类器官大小减小和神经管发育受损。批量RNA测序分析表明,异常的WNT信号通路和G2/M祖细胞的减少可能与热刺激有关。进一步研究发现,热刺激下神经分化增加而增殖减少,这表明周期性热暴露可能通过改变关键发育过程导致大脑发育异常。因此,我们的周期性加热脑类器官模型为模拟母体发热对胎儿大脑发育的影响提供了一个平台,并且可以扩展到神经发育障碍干预的应用中。