Angulo Salavarria Marilyn M, Dell'Amico Claudia, D'Agostino Armando, Conti Luciano, Onorati Marco
Unit of Cell and Developmental Biology, Department of Biology, University of Pisa, Pisa, Italy.
Department of Health Sciences, University of Milan, Milan, Italy.
Front Neuroanat. 2023 Mar 2;17:1130797. doi: 10.3389/fnana.2023.1130797. eCollection 2023.
The human brain is the most complex structure generated during development. Unveiling the ontogenesis and the intrinsic organization of specific neural networks may represent a key to understanding the physio-pathological aspects of different brain areas. The cortico-thalamic and thalamo-cortical (CT-TC) circuits process and modulate essential tasks such as wakefulness, sleep and memory, and their alterations may result in neurodevelopmental and psychiatric disorders. These pathologies are reported to affect specific neural populations but may also broadly alter physiological connections and thus dysregulate brain network generation, communication, and function. More specifically, the CT-TC system is reported to be severely affected in disorders impacting superior brain functions, such as schizophrenia (SCZ), bipolar disorder, autism spectrum disorders or epilepsy. In this review, the focus will be on CT development, and the models exploited to uncover and comprehend its molecular and cellular mechanisms. In parallel to animal models, still fundamental to unveil human neural network establishment, advanced platforms, such as brain organoids derived from human pluripotent stem cells, will be discussed. Indeed, organoids and assembloids represent unique tools to study and accelerate fundamental research in CT development and its dysfunctions. We will then discuss recent cutting-edge contributions, including approaches, concerning ontogenesis, specification, and function of the CT-TC circuitry that generates connectivity maps in physiological and pathological conditions.
人类大脑是发育过程中产生的最复杂结构。揭示特定神经网络的个体发生和内在组织可能是理解不同脑区生理病理方面的关键。皮质-丘脑和丘脑-皮质(CT-TC)回路处理和调节诸如清醒、睡眠和记忆等基本任务,其改变可能导致神经发育和精神疾病。据报道,这些疾病会影响特定的神经群体,但也可能广泛改变生理连接,从而失调脑网络的生成、通信和功能。更具体地说,据报道CT-TC系统在影响高级脑功能的疾病中受到严重影响,如精神分裂症(SCZ)、双相情感障碍、自闭症谱系障碍或癫痫。在本综述中,重点将放在CT的发育以及用于揭示和理解其分子和细胞机制的模型上。与动物模型并行,动物模型对于揭示人类神经网络的建立仍然至关重要,我们还将讨论先进的平台,如源自人类多能干细胞的脑类器官。事实上,类器官和组装体是研究和加速CT发育及其功能障碍基础研究的独特工具。然后,我们将讨论最近的前沿贡献,包括有关CT-TC电路在生理和病理条件下生成连接图谱的个体发生、特化和功能的方法。