4.5 Article

Structural characteristics of polysaccharide microcapsules from Nostoc commune, and their applications in skin wound healing and pathological repair

期刊

BIOMEDICAL MATERIALS
卷 16, 期 4, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1748-605X/abe978

关键词

Nostoc commune Vauch polysaccharide; microcapsule; skin wound healing; gene expression; rat models

资金

  1. National Natural Science Foundation of China [31760028, 31460032]
  2. Youth Talent Support Program of Lanzhou University of Technology [2018]

向作者/读者索取更多资源

In this study, the extraction conditions of Nostoc commune Vauch polysaccharide were optimized using single factor and orthogonal experiments, and microcapsules were prepared. The microcapsules showed good structural and thermal characteristics, and demonstrated effective wound healing ability in rat models. The mechanism behind the enhanced wound healing may involve increased levels of specific substances that enhance cellular protection and promote wound healing.
In this study, the extraction conditions of Nostoc commune Vauch polysaccharide (NCVP) were optimized by single factor and orthogonal experiments. Then, the NCVP microcapsules (NCVPM) were prepared. After analyzing the microcapsule structural and thermal characteristics, the skin wound healing ability was studied by establishing back trauma rat models. Results showed that the NCVP yield was 10.37% under the following optimum conditions: 210 min extraction time, solid-liquid ratio of 1:50 and extraction temperature of 90 degrees C. The overall performance of the microcapsule was the best when the concentration of sodium alginate, calcium chloride and chitosan was 2%, 3% and 0.3%, respectively. NCVPM had spherical morphology, typical microcapsule structural characteristics and good thermal stability, and NCVP was dispersed in the microcapsules. NCVPM showed good biocompatibility and biodegradability, which met the requirements for slow-release polymer materials. After 14 days of treatment, the wound healing rate was 92.4%, the cells were arranged neatly and regularly, the cell nucleus became large and elliptical, the cell had a tendency to divide, and the fibers and microvessel were significantly more. By evaluating the mechanism, NCVPM could increase the content of hydroxyproline and glutathione to protect cells from oxidative damage, leading in turn to accelerated wound healing and shorter wound healing times. It could also accelerate cell division, collagen and microvascular production by increasing transcription levels of vascular endothelial growth factor mRNA and miRNA-21.

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