An in vitro bioengineered model of the human arterial neurovascular unit to study neurodegenerative diseases

用于研究神经退行性疾病的人体动脉神经血管单元体外生物工程模型

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作者:Jerome Robert, Nicholas L Weilinger, Li-Ping Cao, Stefano Cataldi, Emily B Button, Sophie Stukas, Emma M Martin, Philip Seibler, Megan Gilmour, Tara M Caffrey, Elyn M Rowe, Jianjia Fan, Brian MacVicar, Matthew J Farrer, Cheryl L Wellington

Conclusion

This model is a suitable research tool to investigate arterial NVU functions in healthy and disease states. Further, the design of the platform allows culture under native-like flow conditions for extended periods of time and yields sufficient tissue and media for downstream immunohistochemistry and biochemistry analyses.

Results

This system, composed of primary human vascular cells (endothelial cells, smooth muscle cells and astrocytes) and induced pluripotent stem cell (iPSC) derived neurons, demonstrates a physiological multilayer organization of the involved cell types. It reproduces key characteristics of cortical neurons and astrocytes and enables formation of a selective and functional endothelial barrier. We provide proof-of-principle data showing that this in vitro human arterial NVU may be suitable to study neurovascular components of neurodegenerative diseases such as Alzheimer's disease (AD), as endogenously produced phosphorylated tau and beta-amyloid accumulate in the model over time. Finally, neuronal and glial fluid biomarkers relevant to neurodegenerative diseases are measurable in our arterial NVU model.

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