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在具有功能性血脑屏障的人神经血管单元芯片中模拟真菌性脑部感染。

Fungal brain infection modelled in a human-neurovascular-unit-on-a-chip with a functional blood-brain barrier.

机构信息

Department of Biotechnology, Yonsei University, Seoul, Republic of Korea.

Brain Science Institute, Korea Institute of Science and Technology (KIST), Seoul, Republic of Korea.

出版信息

Nat Biomed Eng. 2021 Aug;5(8):830-846. doi: 10.1038/s41551-021-00743-8. Epub 2021 Jun 14.

Abstract

The neurovascular unit, which consists of vascular cells surrounded by astrocytic end-feet and neurons, controls cerebral blood flow and the permeability of the blood-brain barrier (BBB) to maintain homeostasis in the neuronal milieu. Studying how some pathogens and drugs can penetrate the human BBB and disrupt neuronal homeostasis requires in vitro microphysiological models of the neurovascular unit. Here we show that the neurotropism of Cryptococcus neoformans-the most common pathogen causing fungal meningitis-and its ability to penetrate the BBB can be modelled by the co-culture of human neural stem cells, brain microvascular endothelial cells and brain vascular pericytes in a human-neurovascular-unit-on-a-chip maintained by a stepwise gravity-driven unidirectional flow and recapitulating the structural and functional features of the BBB. We found that the pathogen forms clusters of cells that penetrate the BBB without altering tight junctions, suggesting a transcytosis-mediated mechanism. The neurovascular-unit-on-a-chip may facilitate the study of the mechanisms of brain infection by pathogens, and the development of drugs for a range of brain diseases.

摘要

神经血管单元由被星形胶质细胞终足和神经元包围的血管细胞组成,控制脑血流和血脑屏障 (BBB) 的通透性,以维持神经元环境的稳态。研究某些病原体和药物如何穿透人体 BBB 并破坏神经元内环境稳定,需要体外神经血管单元的微生理模型。在这里,我们展示了新型隐球菌(引起真菌性脑膜炎的最常见病原体)的嗜神经性及其穿透 BBB 的能力,可通过在人神经血管单元芯片上共培养人神经干细胞、脑微血管内皮细胞和脑血管周细胞来模拟,该芯片通过逐步重力驱动的单向流维持,可重现 BBB 的结构和功能特征。我们发现病原体形成细胞簇,穿透 BBB 而不改变紧密连接,提示存在一种通过胞吞作用介导的机制。神经血管单元芯片可能有助于研究病原体引起的脑感染机制,以及开发一系列脑部疾病的药物。

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