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使用血脑屏障综合人体模型研究血脑屏障失调在神经致病性中的作用

Study of BBB Dysregulation in Neuropathogenicity Using Integrative Human Model of Blood-Brain Barrier.

作者信息

Simöes Da Gama Coraly, Morin-Brureau Mélanie

机构信息

Inserm, Sorbonne University, UMRS 938 Saint-Antoine Research Center, Immune System and Neuroinflammation Laboratory, Hôpital Saint-Antoine, Paris, France.

出版信息

Front Cell Neurosci. 2022 Jun 10;16:863836. doi: 10.3389/fncel.2022.863836. eCollection 2022.

Abstract

The blood-brain barrier (BBB) is a cellular and physical barrier with a crucial role in homeostasis of the brain extracellular environment. It controls the imports of nutrients to the brain and exports toxins and pathogens. Dysregulation of the blood-brain barrier increases permeability and contributes to pathologies, including Alzheimer's disease, epilepsy, and ischemia. It remains unclear how a dysregulated BBB contributes to these different syndromes. Initial studies on the role of the BBB in neurological disorders and also techniques to permit the entry of therapeutic molecules were made in animals. This review examines progress in the use of human models of the BBB, more relevant to human neurological disorders. In recent years, the functionality and complexity of BBB models have increased. Initial efforts consisted of static transwell cultures of brain endothelial cells. Human cell models based on microfluidics or organoids derived from human-derived induced pluripotent stem cells have become more realistic and perform better. We consider the architecture of different model generations as well as the cell types used in their fabrication. Finally, we discuss optimal models to study neurodegenerative diseases, brain glioma, epilepsies, transmigration of peripheral immune cells, and brain entry of neurotrophic viruses and metastatic cancer cells.

摘要

血脑屏障(BBB)是一种细胞和物理屏障,在脑外环境的稳态中起着关键作用。它控制着营养物质进入大脑,并排出毒素和病原体。血脑屏障的失调会增加通透性,并导致包括阿尔茨海默病、癫痫和缺血在内的多种病症。目前尚不清楚失调的血脑屏障是如何导致这些不同综合征的。最初关于血脑屏障在神经疾病中的作用以及使治疗分子进入大脑的技术的研究是在动物身上进行的。本综述探讨了与人类神经疾病更相关的血脑屏障人类模型的应用进展。近年来,血脑屏障模型的功能和复杂性有所增加。最初的尝试包括脑内皮细胞的静态Transwell培养。基于微流体或源自人诱导多能干细胞的类器官的人类细胞模型变得更加逼真,性能也更好。我们考虑了不同模型代的结构以及用于构建它们的细胞类型。最后,我们讨论了用于研究神经退行性疾病、脑胶质瘤、癫痫、外周免疫细胞迁移以及神经营养病毒和转移性癌细胞进入大脑的最佳模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e051/9226644/440e8766ac54/fncel-16-863836-g0001.jpg

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