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Multilayer polypeptide nanoscale coatings incorporating IL-12 for the prevention of biomedical device associated infections

机译:包含IL-12的多层多肽纳米级涂料可预防生物医学设备相关感染

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摘要

Biomedical device-associated infection is one of the most common and problematic complications faced by millions of patients worldwide. The current antibiotic therapy strategies face challenges, the most serious of which is antibiotic resistance. Studies have shown that the systemic level of interleukin 12 (IL-12) decreases following major injuries resulting in decreased cell-mediated immune response. Here we report the development of IL-12 nanoscale coatings using electrostatic layer-by-layer self-assembly nanotechnology. We found that IL-12 nanoscale coatings at the implant/tissue interface substantially decrease infections in vivo, and IL-12 nanoscale coatings are advantageous over traditional treatments. This approach could be a revolutionary step toward preventing device-associated infections using a non-antibiotic approach.
机译:生物医学设备相关的感染是全世界数百万患者面临的最常见和问题最多的并发症之一。当前的抗生素治疗策略面临挑战,其中最严重的是抗生素抗性。研究表明,严重损伤后白介素12(IL-12)的全身水平降低,导致细胞介导的免疫反应降低。在这里,我们报告使用静电逐层自组装纳米技术开发IL-12纳米级涂料。我们发现,植入物/组织界面处的IL-12纳米级涂层可大大减少体内感染,并且IL-12纳米级涂层优于传统疗法。这种方法可能是使用非抗生素方法预防设备相关感染的革命性步骤。

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