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Current research on metabolic disorders and diabetes relies on animal models because multi-organ diseases cannot be well studied with the standard in vitro assays. Here, we connect models of key metabolic organs, pancreas and liver, on a microfluidic chip to enable diabetes research in a human-based...
ORGANISM(S): Homo sapiens (Human) 
2024-08-10 | PXD052854 | Pride
Microphysiological System Modeling of Ochratoxin A-Associated Nephrotoxicity
Modeling human enterovirus A71 infection using an intestinal microphysiological system
Gene expression of glucose homeostasis in a pancreas-liver microphysiological system
Physiological replication of the glomerulus using a triple culture microphysiological system.
Multi-tissue microphysiological system captures integrated responses to nutritional overload and metabolic therapy
Human iPSC-derived proinflammatory macrophages cause insulin resistance in an isogenic white adipose tissue microphysiological system
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