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Updated: Jul 7, 2026

Development of Combinatorial Therapeutics for Spinal Cord Injury using Stem Cell Delivery
Published on: June 7, 2024
Multi-time-point controlled-release methylprednisolone composite scaffolds based on clinical benchmarking for
Weimin Song1, Enfeng Li2, Ruowei Dai1
1College of Chemistry and Materials, Yangzhou University, Yangzhou, 225002, PR China.
Abstract:
The inflammatory response after spinal cord injury (SCI) significantly impacts the structural and functional recovery of the nervous system. The current clinical anti-inflammatory treatment regimen, high-dose, staged intravenous administration of methylprednisolone (MP), is considered effective, but has been questioned due to the side effects associated with high-dose drug use. In this work, we designed an implantable biphasic composite scaffold (MP-CS/MP-PCL) based on clinical benchmarking for localized and programmed delivery of MP for SCI repair, which could simulate a 15-day clinical treatment regimen but significantly reduces the usage of MP. In vitro experiments demonstrate that the composite scaffold exhibits outstanding stability, biocompatibility, and potent anti-inflammatory effects. It significantly suppresses the secretion of tumor necrosis factor-α (TNF-α) and interleukin-1β (IL-1β), and inhibits the polarization of immune cells toward the pro-inflammatory M1 phenotype. In vivo studies indicate that the composite scaffold effectively suppresses the prolonged release of pro-inflammatory cytokines (TNF-α and IL-1β), inhibits glial scar formation, repairs damaged spinal cord tissue, and finally promoting the recovery of hindlimb motor function. The MP-CS/MP-PCL composite scaffold offers a safe, effective, and potentially alternative strategy to traditional clinical high-dose intravenous therapy.

