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首页> 外文期刊>Polymers >Potential Biomedical Application of Enzymatically Treated Alginate/Chitosan Hydrosols in Sponges—Biocompatible Scaffolds Inducing Chondrogenic Differentiation of Human Adipose Derived Multipotent Stromal Cells
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Potential Biomedical Application of Enzymatically Treated Alginate/Chitosan Hydrosols in Sponges—Biocompatible Scaffolds Inducing Chondrogenic Differentiation of Human Adipose Derived Multipotent Stromal Cells

机译:酶处理海藻酸钠/壳聚糖溶胶在海绵中的潜在生物医学应用-生物相容性支架诱导人脂肪多能基质细胞成软骨分化。

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摘要

Current regenerative strategies used for cartilage repair rely on biomaterial functionality as a scaffold for cells that may have potential in chondrogenic differentiation. The purpose of the research was to investigate the biocompatibility of enzymatically treated alginate/chitosan hydrosol sponges and their suitability to support chondrogenic differentiation of human adipose derived multipotent stromal cells (hASCs). The alginate/chitosan and enzyme/alginate/chitosan sponges were formed from hydrosols with various proportions and were used as a biomaterial in this study. Sponges were tested for porosity and wettability. The porosity of each sponge was higher than 80%. An equal dose of alginate and chitosan in the composition of sponges improved their swelling ability. It was found that equal concentrations of alginate and chitosan in hydrosols sponges assure high biocompatibility properties that may be further improved by enzymatic treatment. Importantly, the high biocompatibility of these biomaterials turned out to be crucial in the context of hydrosols’ pro-chondrogenic function. After exposure to the chondrogenic conditions, the hASCs in N/A/C and L/A/C sponges formed well developed nodules and revealed increased expression of collagen type II, aggrecan and decreased expression of collagen type I. Moreover, in these cultures, the reactive oxygen species level was lowered while superoxide dismutase activity increased. Based on the obtained results, we conclude that N/A/C and L/A/C sponges may have prospective application as hASCs carriers for cartilage repair.
机译:当前用于软骨修复的再生策略依赖于生物材料功能性作为可能具有软骨分化潜能的细胞的支架。该研究的目的是研究经酶处理的藻酸盐/壳聚糖水溶胶海绵的生物相容性及其对支持人脂肪来源的多能基质细胞(hASC)软骨分化的适用性。藻酸盐/壳聚糖和酶/藻酸盐/壳聚糖海绵由各种比例的水溶胶形成,并在本研究中用作生物材料。测试海绵的孔隙率和润湿性。每个海绵的孔隙率高于80%。海绵组合物中等量的藻酸盐和壳聚糖可改善其溶胀能力。已发现在水溶胶海绵中相等浓度的藻酸盐和壳聚糖可确保高生物相容性,可通过酶处理进一步改善其生物相容性。重要的是,这些生物材料的高生物相容性对于水溶胶促软骨形成功能至关重要。暴露于软骨形成条件后,N / A / C和L / A / C海绵中的hASC形成了良好发育的结节,并显示II型胶原蛋白,聚集蛋白聚糖的表达增加以及I型胶原蛋白的表达降低。此外,在这些培养物中,活性氧水平降低,而超氧化物歧化酶活性增加。根据获得的结果,我们得出结论,N / A / C和L / A / C海绵作为hASCs软骨修复载体可能具有前瞻性应用。

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