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1. Building‐Block Size Mediates Microporous Annealed Particle Hydrogel Tube Microenvironment Following Spinal Cord Injury

2. Multichannel bridges and NSC synergize to enhance axon regeneration, myelination, synaptic reconnection, and recovery after SCI

4. Multichannel bridges and NSC synergize to enhance axon regeneration, myelination, synaptic reconnection, and recovery after SCI

7. Restoring normal islet mass and function in type 1 diabetes through regenerative medicine and tissue engineering

8. Lentiviral Interleukin-10 Gene Therapy Preserves Fine Motor Circuitry and Function After a Cervical Spinal Cord Injury in Male and Female Mice

9. Towards systems tissue engineering: elucidating the dynamics, spatial coordination, and individual cells driving emergent behaviors

10. Polycistronic Delivery of IL-10 and NT-3 Promotes Oligodendrocyte Myelination and Functional Recovery in a Mouse Spinal Cord Injury Model

13. PLG Bridge Implantation in Chronic SCI Promotes Axonal Elongation and Myelination.

14. Intravascular innate immune cells reprogrammed via intravenous nanoparticles to promote functional recovery after spinal cord injury

15. Aligned hydrogel tubes guide regeneration following spinal cord injury

16. Polymer scaffolds delineate healthy from diseased states at sites distal from the pancreas in two models of type 1 diabetes.

19. Combinatorial lentiviral gene delivery of pro‐oligodendrogenic factors for improving myelination of regenerating axons after spinal cord injury

20. Spinal Progenitor-Laden Bridges Support Earlier Axon Regeneration Following Spinal Cord Injury.

21. Reducing inflammation through delivery of lentivirus encoding for anti-inflammatory cytokines attenuates neuropathic pain after spinal cord injury

22. Local Immunomodulation with Anti-inflammatory Cytokine-Encoding Lentivirus Enhances Functional Recovery after Spinal Cord Injury

23. Feasibility study on mouse live imaging after spinal cord injury and poly(lactide-co-glycolide) bridge implantation

24. Engineered immunologic niche monitors checkpoint blockade response and probes mechanisms of resistance

26. Allergen‐encapsulating Nanoparticles Reprogram Pathogenic Allergen‐Specific Th2 Cells to Suppress Food Allergy

30. Contributors

37. Dynamic transcription factor activity networks in response to independently altered mechanical and adhesive microenvironmental cues

38. Dynamic transcription factor activity networks in response to independently altered mechanical and adhesive microenvironmental cues.

39. Reducing neuroinflammation by delivery of IL‐10 encoding lentivirus from multiple‐channel bridges

40. Semi-automated counting of axon regeneration in poly(lactide co-glycolide) spinal cord bridges

42. Biomaterial bridges enable regeneration and re-entry of corticospinal tract axons into the caudal spinal cord after SCI: Association with recovery of forelimb function

50. Grand Challenges at the Interface of Engineering and Medicine

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