Electrospun methacrylated natural/synthetic composite membranes for gingival tissue engineering

C. W. Brian Webb, Katya D'Costa,Eric Tawagi,Jeremy A. Antonyshyn, S. O. P. Hofer,J. Paul Santerre

ACTA BIOMATERIALIA(2024)

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摘要
New functional materials for engineering gingival tissue are still in the early stages of development. Materials for such applications must maintain volume and have advantageous mechanical and biological characteristics for tissue regeneration, to be an alternative to autografts, which are the current benchmark of care. In this work, methacrylated gelatin (GelMa) was photocrosslinked with synthetic immunomodulatory methacrylated divinyl urethanes and defined monomers to generate composite scaffolds. Using a factorial design, with the synthetic monomers of a degradable polar/hydrophobic/ionic polyurethane (DPHI) and GelMa, composite materials were electrospun with polycarbonate urethane (PCNU) and lightcured in-flight. The materials had significantly different relative hydrophilicities, with unique biodegradation profiles associated with specific formulations, thereby providing good guidance to achieving desired mechanical characteristics and scaffold resorption for gingival tissue regeneration. In accelerated esterase/collagenase degradation models, the new materials exhibited an initial rapid weight loss followed by a more gradual rate of degradation. The degradation profile allowed for the early infiltration of human adipose-derived stromal/stem cells, while still enabling the graft's structural integrity to be maintained. In conclusion, the materials provide a promising candidate platform for the regeneration of oral soft tissues, addressing the requirement of viable tissue infiltration while maintaining volume and mechanical integrity.
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关键词
Electrospinning,Protein/polyurethane composites,Tissue engineering,Gingival tissue,Biodegradation
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