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Novel translational model of resolving inflammation triggered by UV-killed

机译:解决由紫外线杀死引发的炎症的新型转化模型

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Abstract Whilst numerous studies investigating the aetiology of inflammatory diseases have been performed in rodents, the applicability of these data to human pathophysiology is frequently debated. Regardless of the strengths and weaknesses of rodent models in biomedical research, there is a need to develop models of experimental inflammation in humans. Here, we describe a self-resolving acute inflammatory response triggered by the intradermal injection of UV-killed Escherichia coli into the forearm of healthy volunteers. Cells and exudates were harvested from onset to resolution by applying negative pressure over the inflamed site. Onset was characterized by high blood flow, neutrophilia and peak levels of pro-inflammatory cytokines, whilst resolution showed a decline in blood blow, reduction in neutrophils, increase in monocytes/macrophages and waning of classic pro-inflammatory cytokine levels. An anti-inflammatory effect, defined as suppression of onset phase events, was demonstrated by administering naproxen, a conventional non-steroidal anti-inflammatory drug. In summary, this model of resolving acute inflammation is minimally invasive, highly tractable and allows simultaneous investigation of the vascular response, cellular trafficking and chemical mediator profile of onset and resolution phases of acute inflammation in humans. It can serve as a translational platform to provide mechanistic insights and to test the clinical efficacy of novel anti-inflammatory and pro-resolving drugs, and also as a tool in patients to explore inherent defects in resolution pathways.
机译:摘要尽管在啮齿动物中进行了许多研究炎症性疾病病因的研究,但这些数据在人类病理生理学中的适用性却经常引起争议。无论啮齿动物模型在生物医学研究中的优缺点如何,都需要开发人类实验性炎症模型。在这里,我们描述了由紫外线杀死的大肠杆菌皮内注射到健康志愿者的前臂中引发的自我解决的急性炎症反应。通过在发炎部位上施加负压,从发病到消退,收获细胞和渗出液。发作的特征是高血流量,中性粒细胞增多和促炎细胞因子的峰值水平,而分辨力则显示出血量下降,嗜中性粒细胞减少,单核细胞/巨噬细胞增加以及经典的促炎细胞因子水平下降。服用萘普生(一种常规的非甾体类抗炎药)证明了抗炎作用(定义为抑制发作期事件)。总之,这种解决急性炎症的模型是微创的,高度易处理的,并允许同时研究人类急性炎症的发作和消退阶段的血管反应,细胞运输和化学介质概况。它可以充当提供机械见解和测试新型抗炎药和促分辨药物的临床功效的翻译平台,也可以作为患者探索解决途径内在缺陷的工具。

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