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Updated: Apr 12, 2026

Constructing a Collagen Hydrogel for the Delivery of Stem Cell-loaded Chitosan Microspheres
Published on: June 1, 2012
A magnolol/BMSC-integrated collagen hydrogel with dual anti-inflammatory and regenerative functions for corneal
Xiaojie Li1, Haitong Feng2, Longbao Feng3
1Aier Academy of Ophthalmology, Central South University, No.188, Furong South Road, Tianxin District, Changsha, 410004, Hunan, PR China.
Abstract:
Corneal injuries remain a major cause of visual impairment, where inflammation, infection, and stromal scarring severely hinder functional regeneration. Here, we propose a multifunctional hydrogel concept that integrates structural biomimicry with immunoregulatory and antimicrobial therapy to achieve scar-free corneal healing. The injectable hydrogel is constructed from type I collagen and oxidized dextran via dynamic Schiff-base crosslinking, incorporating poly(lactic-co-glycolic acid)-poly(ethylene glycol) (PLGA-PEG) nanomicelles encapsulating magnolol (Mag-NMs) and bone marrow-derived mesenchymal stem cells (BMSCs). This composite system exhibits excellent transparency, tunable viscoelasticity, and enzymatic biodegradability, forming a biocompatible microenvironment that supports cell integration and drug release. Mag-NMs endow potent antibacterial and anti-angiogenic properties while modulating macrophage polarization toward an anti-inflammatory M2 phenotype. Meanwhile, embedded BMSCs further promote epithelial repair and suppress fibrotic remodeling. In a rabbit corneal injury model, the OC/Mag-NMs/BMSCs hydrogel accelerated re-epithelialization, restored optical clarity, and markedly reduced inflammatory (IFN-γ, CD4, CD68) and fibrotic responses without systemic toxicity. This multi-targeting strategy demonstrates that coupling small-molecule nano-delivery with stem-cell therapy within a biomimetic scaffold enables comprehensive regulation of infection, inflammation, and fibrosis, offering a promising direction for translational corneal regeneration.

