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Healing of skin wounds using a new cocoon scaffold loaded with platelet-rich or platelet-poor plasma

机译:使用装有富血小板或贫血小板血浆的新型茧形支架治疗皮肤伤口

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The cocoons of the silkworm Bombyx mori are widely used as biofunctional materials. In the present study, cocoon composites (CCs) were treated with a solution consisting of calcium chloride, ethanol, and distilled water, resulting in partial dissolution, followed by freeze-drying, yielding cocoon scaffolds (CCSs). The CCSs were then immersed in autologous platelet-rich plasma (PRP) or platelet-poor plasma (PPP) obtained from rabbits and freeze-dried again, allowing us to harvest the other two composite materials (CCSs + PRP and CCSs + PPP). Analysis of the physical and biological properties of the materials demonstrated that the water absorption and retention capacities of CCSs had improved. After loading with PRP or PPP, both of the composite materials significantly promoted the growth of L929 cells, with CCSs + PRP showing slightly better results. Additionally, in vivo studies showed that both of the composite materials could enhance the process of wound healing, with the CCSs + PRP exhibiting the best results. Thus, our results suggested that these composites may have potential applications in the biomedical field.
机译: Bombyx mori 的茧被广泛用作生物功能材料。在本研究中,用氯化钙,乙醇和蒸馏水组成的溶液处理茧复合材料(CCs),使其部分溶解,然后冷冻干燥,得到茧支架(CCS)。然后将CCS浸入从兔获得的自体富血小板血浆(PRP)或贫血小板血浆(PPP)中,然后再次冻干,使我们能够收获其他两种复合材料(CCSs + PRP和CCSs + PPP)。对材料的物理和生物学特性的分析表明,CCS的吸水率和保水能力有所提高。装载PRP或PPP后,两种复合材料均显着促进L929细胞的生长,CCSs + PRP则显示出更好的结果。此外, in vivo 研究表明,两种复合材料均可以促进伤口愈合,其中CCSs + PRP的效果最好。因此,我们的结果表明这些复合材料可能在生物医学领域具有潜在的应用。

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