Le Vinatier Hospital Center, 95 boulevard Pinel, 69675, Bron cedex, France.
iMIND, Center of Excellence for Autism, 95 boulevard Pinel, 69675, Bron cedex, France.
Mol Psychiatry. 2024 Jul;29(7):2274-2284. doi: 10.1038/s41380-024-02487-8. Epub 2024 Mar 5.
Autism spectrum disorder (ASD) is identified by a set of neurodevelopmental divergences that typically affect the social communication domain. ASD is also characterized by heterogeneous cognitive impairments and is associated with cooccurring physical and medical conditions. As behaviors emerge as the brain matures, it is particularly essential to identify any gaps in neurodevelopmental trajectories during early perinatal life. Here, we introduce the potential of light-sheet imaging for studying developmental biology and cross-scale interactions among genetic, cellular, molecular and macroscale levels of circuitry and connectivity. We first report the core principles of light-sheet imaging and the recent progress in studying brain development in preclinical animal models and human organoids. We also present studies using light-sheet imaging to understand the development and function of other organs, such as the skin and gastrointestinal tract. We also provide information on the potential of light-sheet imaging in preclinical drug development. Finally, we speculate on the translational benefits of light-sheet imaging for studying individual brain-body interactions in advancing ASD research and creating personalized interventions.
自闭症谱系障碍 (ASD) 是由一组神经发育差异确定的,这些差异通常会影响社会交流领域。ASD 的特征还包括认知障碍的异质性,并与共发的身体和医疗状况相关。由于行为是随着大脑的成熟而出现的,因此特别有必要在围产期早期识别神经发育轨迹中的任何差距。在这里,我们介绍了光片成像在研究发育生物学以及遗传、细胞、分子和宏观水平的电路和连接性之间的跨尺度相互作用方面的潜力。我们首先介绍了光片成像的核心原理以及在临床前动物模型和人类类器官中研究大脑发育的最新进展。我们还介绍了使用光片成像来了解皮肤和胃肠道等其他器官的发育和功能的研究。我们还提供了有关光片成像在临床前药物开发中的潜力的信息。最后,我们推测光片成像在研究 ASD 研究中的个体脑-体相互作用和创建个性化干预措施方面的转化效益。