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Using Electrospun Scaffolds to Promote Macrophage Phenotypic Modulation and Support Wound Healing

机译:使用电纺支架促进巨噬细胞表型调节和支持伤口愈合

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The development of pressure ulcers in spinal cord injury patients is extremely common, often requiring extensive surgical procedures. Macrophages (MACs) play a crucial role in the innate immune system, contributing to wound healing and overall regeneration. MACs have been found to possess the potential to be activated by external factors from their M0 inactive state to an M1 proinflammatory or M2 regenerative state. This study conducted a comprehensive evaluation of MAC phenotype in response to electrospun scaffolds of varying material fiber/pore diameter, fiber stiffness, and +/- inclusion of platelet-rich plasma (PRP). Generally, it was found that the addition of PRP resulted in decreased pore size, where 5 silk fibroin (SF) had the stiffest fibers. Furthermore, PRP scaffolds demonstrated an increased production of VEGF and chemotaxis. The polycaprolactone (PCL) and SF scaffolds had the largest cell infiltration and proliferation. Overall, it was found that 5% SF had both ideal fiber and pore structure, allowing for cell infiltration further enhanced by the presence of PRP. Additionally, this scaffold led to a reasonable production of VEGF while still allowing fibroblast proliferation to occur. These results suggest that such a scaffold could provide an off-the-shelf product capable of modifying the local MAC response.
机译:脊髓损伤患者发生压疮的情况极为普遍,通常需要大量的外科手术。巨噬细胞(MAC)在先天免疫系统中起关键作用,有助于伤口愈合和整体再生。已发现MAC具有从其M0失活状态到M1促炎或M2再生状态的外部因素激活的潜力。这项研究针对不同材料纤维/孔直径,纤维刚度和富血小板血浆(PRP)+/-夹杂物的电纺支架进行了MAC表型的综合评估。通常,发现添加PRP会导致孔径减小,其中5个丝素蛋白(SF)具有最硬的纤维。此外,PRP支架表现出增加的VEGF产生和趋化性。聚己内酯(PCL)和SF支架具有最大的细胞浸润和增殖。总的来说,发现5%SF同时具有理想的纤维和孔结构,通过PRP的存在使细胞浸润进一步增强。另外,该支架导致合理地产生VEGF,同时仍然允许成纤维细胞增殖发生。这些结果表明,这种支架可以提供能够改变局部MAC响应的现成产品。

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