A 3D Human Neuron-on-Chip Platform to Monitor Neuronal Injury Responses
Tang, R.; Latchoumane, C.-F.; Chopra, A.; Sarkar, M. M.; Kim, C.; Gonsalves, N.; Wu, H.-F.; Mhatre-Winters, I.; Mishra, A.; Zeltner, N.; Richardson, J. R.; Karumbaiah, L.
Show abstract
Traumatic brain injury (TBI) is a major cause of neurological dysfunction and long-term neurodegeneration, yet the intrinsic neuronal contributions to TBI pathophysiology remain incompletely defined. Here, we present a novel Neuron-on-Chip microfluidic platform that can be used to mechanically injure mature human prefrontal cortex neurons (hPFCs) embedded in three-dimensional (3D) hydrogels, enabling the study of injury responses in pure neuronal cultures. Real-time calcium dynamics across 13 metrics of single-cell and network activity reveals biphasic injury response: an early phase (0.5-24 h) characterized by excitotoxicity, hyper-synchronized bursting, and network collapse; and a late phase (8 d) marked by sustained depolarization and structural remodeling. Secretome profiling uncovers progressive elevations in extracellular pT181 and total Tau from days 1 to 5 post-injury. Cytokine analyses identify early (24 h) elevations in IP-10, IL-10, IFN2, and NCAM, and late increases (8 d) in CXCL9 and MPO, linking neuronal activity changes to stage-specific inflammatory signaling. Immunocytochemistry and immunoblotting confirmed temporally ordered upregulation of calpain-1 and caspase-3 (days 1-3), phosphorylated Tau (AT8+, days 5-8), and neurofibrillary tangle-like Tau aggregates (NFT+, day 8). These findings establish our platform as a scalable microphysiological model for probing the dynamic cellular and molecular sequelae of neuronal response to injury, offering insights into neurodegeneration and opportunities for therapeutic discovery.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Micromotion derived fluid shear stress mediates peri-electrode gliosis through mechanosensitive ion channels 95%
- Mechanical environment afforded by engineered polymer hydrogel critically regulates survival of neural stem cells transplanted in the injured spinal cord via Piezo1-mediated mechanotransduction 94%
- OPTRACE: Optical Imaging Guided Transplantation and Tracking of Cells in the Mouse Brain 94%
Similar papers in this journal
Similar papers in this journal
- Brain-derived exosomal hemoglobin transfer contributes to neuronal mitochondrial homeostasis under hypoxia 93%
- Elevated Ubiquitin Phosphorylation by PINK1 Contributes to Proteasomal Impairment and Promotes Neurodegeneration 93%
- Revealing intact neuronal circuitry in centimeter-sized formalin-fixed paraffin-embedded brain 93%
Similar papers in this journal
- Chemogenetic activation of microglial Gi signaling decreases microglial surveillance and impairs neuronal synchronization 93%
- Injectable 3D microcultures enable intracerebral transplantation of mature neurons directly reprogrammed from patient fibroblasts 93%
- Brain injury accelerates the onset of a reversible age-related microglial phenotype associated with hyperphagocytosis and inflammatory neurodegeneration 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.