Department of Psychiatry, University of California San Diego, La Jolla, CA, 92093, USA.
Department of Pediatrics and Department of Cellular & Molecular Medicine, University of California San Diego, School of Medicine, Center for Academic Research and Training in Anthropogeny (CARTA), Kavli Institute for Brain and Mind, Archealization Center (ArchC), La Jolla, CA, 92037, USA.
Mol Psychiatry. 2023 Jan;28(1):83-95. doi: 10.1038/s41380-022-01708-2. Epub 2022 Aug 10.
Psychiatric disorders are often distinguished from neurological disorders in that the former do not have characteristic lesions or findings from cerebrospinal fluid, electroencephalograms (EEGs), or brain imaging, and furthermore do not have commonly recognized convergent mechanisms. Psychiatric disorders commonly involve clinical diagnosis of phenotypic behavioral disturbances of mood and psychosis, often with a poorly understood contribution of environmental factors. As such, psychiatric disease has been challenging to model preclinically for mechanistic understanding and pharmaceutical development. This review compares commonly used animal paradigms of preclinical testing with evolving techniques of induced pluripotent cell culture with a focus on emerging three-dimensional models. Advances in complexity of 3D cultures, recapitulating electrical activity in utero, and disease modeling of psychosis, mood, and environmentally induced disorders are reviewed. Insights from these rapidly expanding technologies are discussed as they pertain to the utility of human organoid and other models in finding novel research directions, validating pharmaceutical action, and recapitulating human disease.
精神障碍通常与神经障碍区分开来,因为前者没有脑脊液、脑电图 (EEG) 或脑成像的特征性病变或发现,也没有公认的趋同机制。精神障碍通常涉及情绪和精神病的临床诊断,表型行为障碍,通常环境因素的贡献也难以理解。因此,精神疾病在临床前模型中对于机制理解和药物开发具有挑战性。本综述比较了常用于临床前测试的动物模型与诱导多能细胞培养的不断发展的技术,重点介绍了新兴的三维模型。综述了三维培养复杂性的进展、重现宫内电活动以及精神病、情绪和环境诱发疾病的建模。讨论了这些快速扩展技术的见解,因为它们涉及人类类器官和其他模型在寻找新的研究方向、验证药物作用和再现人类疾病方面的效用。