AI Article Synopsis

  • * The scaffold demonstrated low toxicity (less than 13%) and minimal hemolytic effects (1.67%), along with significant antibacterial properties, as evidenced by low biofilm formation.
  • * Mice treated with the scaffold showed almost complete wound healing within five days, while structural analyses confirmed that the addition of silk fibroin and ZnCrO improved the composite's mechanical properties and elasticity.

Article Abstract

Given the important aspects of wound healing approaches, in this work, an innovative biocompatible nanobiocomposite scaffold was designed and prepared based on cross-linked lignin-agarose hydrogel, extracted silk fibroin solution, and zinc chromite (ZnCrO) nanoparticles. Considering the cell viability technique, red blood cell hemolysis in addition to anti-biofilm assays, it was determined that after three days, the toxicity of the cross-linked lignin-agarose/SF/ZnCrO nanobiocomposite was less than 13%. Moreover, the small hemolytic effect (1.67%) and high level of prevention in forming a biofilm with low OD value (0.18) showed signs of considerable hemocompatibility and antibacterial activity. Besides, according to an assay study, the wounds of mice treated with the cross-linked lignin-agarose/SF/ZnCrO nanobiocomposite scaffold were almost completely healed in five days. Aside from these biological tests, the structural features were evaluated by FT-IR, EDX, FE-SEM, and TG analyses, as well as swelling ratio, rheological, and compressive mechanical study tests. Additionally, it was concluded that adding silk fibroin and ZnCrO nanoparticles could enhance the mechanical tensile properties of cross-linked lignin-agarose hydrogel, and also an elastic network was characterized for this designed nanobiocomposite.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033182PMC
http://dx.doi.org/10.1039/d1ra01300aDOI Listing

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