Polysialic Acid Presentation on Microporous Scaffolds Supports Neural Repair after Ischemic Stroke
Ouyang, Y.; Che, S.; Newman, H.; Poysungnoen, K.; Segura, T.
Show abstract
Recovery following ischemic stroke remains limited due to insufficient neural regeneration. Polysialic acid (PSA), a glycan prominently expressed during neural development, modulates neural progenitor cell (NPC) plasticity and migration, but its therapeutic potential in biomaterial-based stroke therapies remains underexplored. In this study, microporous annealed particle (MAP) scaffolds conjugated with PSA (PSA-MAP) were engineered to regulate NPC fate and promote neural tissue regeneration after stroke. PSA-MAP increased the presence of Sox2-positive progenitor cells within infarct and peri-infarct regions and elevated axonal content (NF200) in the lesion, while astrocytic and vascular coverage were not detectably changed at this early stage. In addition, 3D NPC cultures in MAP showed that tethered PSA alters NPC behavior over time, with reduced progenitor marker expression and PSA-dependent shifts in morphology, consistent with progression away from a progenitor state. Together, these data identify a glycan-forward, neuro-first repair route in which PSA-MAP enhances early neural regeneration without requiring concomitant angiogenic expansion, establishing PSA-MAP as a targeted biomaterial approach for endogenous neural repair after ischemic stroke.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- SDF-1 Bound Heparin Nanoparticles Recruit Progenitor Cells for Their Differentiation and Promotion of Angiogenesis After Stroke 97%
- Dopaminergic axon tracts within a hyaluronic acid hydrogel encasement for implantation to restore the nigrostriatal pathway 94%
- Perfusable biohybrid designs for bioprinted skeletal muscle tissue 94%
Similar papers in this journal
- Cell-adaptable dynamic hydrogel reinforced with stem cells improves the functional repair of spinal cord injury by alleviating neuroinflammation 95%
- Custom-engineered hydrogels for delivery of human iPSC-derived neurons into the injured cervical spinal cord 95%
- Recapitulating apicobasal tissue polarity in extracellular matrix incorporated airway organoids 94%
Similar papers in this journal
Similar papers in this journal
- Mechanical environment afforded by engineered polymer hydrogel critically regulates survival of neural stem cells transplanted in the injured spinal cord via Piezo1-mediated mechanotransduction 95%
- Embedded 3D printing in self-healing annealable composites for precise patterning of functionally mature human neural constructs 95%
- OPTRACE: Optical Imaging Guided Transplantation and Tracking of Cells in the Mouse Brain 95%
Similar papers in this journal
- 4D bioprinting shape-morphing tissues in granular support hydrogels: Sculpting structure and guiding maturation 94%
- MPI-Guided Photothermal Therapy of Prostate Cancer using Stem Cell Delivery of Magnetotheranostic Nanoflowers 93%
- A self-renewing biomimetic skeletal muscle construct engineered using induced myogenic progenitor cells 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.