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In Vitro Effectiveness of Microspheres Based on Silk Sericin and Chlorella vulgaris or Arthrospira platensis for Wound Healing Applications

机译:基于丝绢胶蛋白和小球藻或白色节肢动物的微球在伤口愈合中的体外功效

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摘要

Some natural compounds have recently been widely employed in wound healing applications due to their biological properties. One such compound is sericin, which is produced by Bombix mori, while active polyphenols, polysaccharides and proteins are synthetized by Chlorella vulgaris and Arthrospira platensis microalgae. Our hypothesis was that sericin, as an optimal bioactive polymeric carrier for microencapsulation process, could also improve the regenerative effect of the microalgae. A solvent-free extraction method and spray drying technique were combined to obtain five formulations, based on algal extracts (C. vulgaris and A. platensis, Chl and Art, respectively) or silk sericin (Ser) or their mixtures (Chl-Ser and Art-Ser). The spray drying was a suitable method to produce microspheres with similar dimensions, characterized by collapsed morphology with a rough surface. Art and Art-Ser showed higher antioxidant properties than other formulations. All microspheres resulted in cytocompatibility on fibroblasts until 1.25 mg/mL and promoted cell migration and the complete wound closure; this positive effect was further highlighted after treatment with Art and Art-Ser. To our surprize the combination of sericin to Art did not improve the microalgae extract efficacy, at least in our experimental conditions.
机译:由于它们的生物学特性,一些天然化合物最近已广泛用于伤口愈合应用中。一种这样的化合物是丝胶,由桑蚕Bombix mori生产,而活性多酚,多糖和蛋白质则由小球藻(Chlorella vulgaris)和板状关节藻(Arthrospira platensis)微藻类合成。我们的假设是,鞘胶作为微囊化工艺的最佳生物活性聚合物载体,也可以改善微藻的再生效果。结合无溶剂提取方法和喷雾干燥技术,以藻类提取物(分别为寻常的C.寻常和C. Art)或藻丝胶(Ser)或其混合物(Chl-Ser和Art-Ser)。喷雾干燥是生产具有相似尺寸,特征在于具有粗糙表面的塌陷形态的微球的合适方法。 Art和Art-Ser显示出比其他配方更高的抗氧化性能。所有微球均能在成纤维细胞上产生细胞相容性,直至1.25 mg / mL,并促进细胞迁移和伤口完全闭合。在用Art和Art-Ser治疗后,这种积极作用进一步凸显出来。令人惊讶的是,至少在我们的实验条件下,丝胶蛋白与Art的结合并没有提高微藻提取物的功效。

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