Human physiomimetic model integrating microphysiological systems of the gut, liver, and brain for studies of neurodegenerative diseases

整合肠道、肝脏和大脑微生理系统的人体模拟模型,用于研究神经退行性疾病

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作者:Martin Trapecar, Emile Wogram, Devon Svoboda, Catherine Communal, Attya Omer, Tenzin Lungjangwa, Pierre Sphabmixay, Jason Velazquez, Kirsten Schneider, Charles W Wright, Samuel Mildrum, Austin Hendricks, Stuart Levine, Julien Muffat, Meelim Jasmine Lee, Douglas A Lauffenburger, David Trumper, Rudolf

Abstract

Slow progress in the fight against neurodegenerative diseases (NDs) motivates an urgent need for highly controlled in vitro systems to investigate organ-organ- and organ-immune-specific interactions relevant for disease pathophysiology. Of particular interest is the gut/microbiome-liver-brain axis for parsing out how genetic and environmental factors contribute to NDs. We have developed a mesofluidic platform technology to study gut-liver-cerebral interactions in the context of Parkinson's disease (PD). It connects microphysiological systems (MPSs) of the primary human gut and liver with a human induced pluripotent stem cell-derived cerebral MPS in a systemically circulated common culture medium containing CD4+ regulatory T and T helper 17 cells. We demonstrate this approach using a patient-derived cerebral MPS carrying the PD-causing A53T mutation, gaining two important findings: (i) that systemic interaction enhances features of in vivo-like behavior of cerebral MPSs, and (ii) that microbiome-associated short-chain fatty acids increase expression of pathology-associated pathways in PD.

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