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Effects of IFN‐γ on immune cell kinetics during the resolution of acute lung injury

机译:IFN-γ对急性肺损伤分辨期间免疫细胞动力学的影响

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The immunologic responses that occur early in the acute respiratory distress syndrome (ARDS) elicit immune‐mediated damage. The mechanisms underlying the resolution of ARDS, particularly the role of signaling molecules in regulating immune cell kinetics, remain important questions. Th1‐mediated responses can contribute to the pathogenesis of acute lung injury (ALI). Interferon‐gamma (IFN‐γ) orchestrates early inflammatory events, enhancing immune‐mediated damage. The current study investigated IFN‐γ during resolution in several experimental models of ALI. The absence of IFN‐γ resulted in altered kinetics of lymphocyte and macrophage responses, suggesting that IFN‐γ present in this microenvironment is influential in ALI resolution. Genetic deficiency of IFN‐γ or administering neutralizing IFN‐γ antibodies accelerated the pace of resolution. Neutralizing IFN‐γ decreased the numbers of interstitial and inflammatory macrophages and increased alveolar macrophage numbers during resolution. Our results underline the complexity of lung injury resolution and provide insight into the effects through which altered IFN‐γ concentrations affect immune cell kinetics and the rate of resolution. These findings suggest that therapies that spatially or temporally control IFN‐γ signaling may promote ALI resolution. Identifying and elucidating the mechanisms critical to ALI resolution will allow the development of therapeutic approaches to minimize collateral tissue damage without adversely altering the response to injury.
机译:在急性呼吸窘迫综合征(ARDS)引发免疫介导的损害中早期发生的免疫反应。解决ARDS的决议的机制,特别是信号传导分子在调节免疫细胞动力学中的作用仍然是重要的问题。 Th1介导的反应可以有助于急性肺损伤的发病机制(ALI)。干扰素-γ(IFN-γ)核对早期炎症事件,增强免疫介导的损伤。目前研究在Ali的几种实验模型中的分辨率期间研究了IFN-γ。没有IFN-γ导致淋巴细胞和巨噬细胞反应的动力学改变,表明该微环境中存在的IFN-γ在ALI分辨率中有影响力。 IFN-γ或施用中和IFN-γ抗体的遗传缺乏加速了分辨率的速度。中和IFN-γ降低了间质和炎症巨噬细胞的数量,并在分辨率期间增加了肺泡巨噬细胞数。我们的结果强调了肺损伤分辨率的复杂性,并对IFN-γ浓度影响免疫细胞动力学和分辨率的速率提供了洞察力的洞察力。这些发现表明,空间或时间控制IFN-γ信号传导的疗法可以促进ALI分辨率。识别和阐明对ALI分辨率至关重要的机制将允许制定治疗方法,以最大限度地减少抵押品组织损伤,而不会对损伤的反应产生不利影响。

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