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首页> 外文期刊>American Journal of Physiology >Smart imaging of acute lung injury: exploration of myeloperoxidase activity using in vivo endoscopic confocal fluorescence microscopy
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Smart imaging of acute lung injury: exploration of myeloperoxidase activity using in vivo endoscopic confocal fluorescence microscopy

机译:急性肺损伤的智能成像:使用体内内窥镜共焦荧光显微镜探讨肌释放酶活性

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The pathophysiology of acute lung injury (ALI) is well characterized, but its real-time assessment at bedside remains a challenge. When patients do not improve after 1 wk despite supportive therapies, physicians have to consider open lung biopsy (OLE) to identify the process(es) at play. Sustained inflammation and inadequate repair are often observed in this context. OLB is neither easy to perform in a critical setting nor exempt from complications. Herein, we explore intravital endoscopic confocal fluorescence microscopy (ECFM) of the lung in vivo combined with the use of fluorescent smart probe(s) activated by myeloperoxidase (MPO). MPO is a granular enzyme expressed by polymorphonuclear neutrophils (PMNs) and alveolar macrophages (AMs), catalyzing the synthesis of hypoclorous acid, a by-product of hydrogen peroxide. Activation of these probes was first validated in vitro in relevant cells (i.e., AMs and PMNs) and on MPO-non-expressing cells (as negative controls) and then tested in vivo using three rat models of ALI and real-time intravital imaging with ECFM. Semiquantitative image analyses revealed that in vivo probe-related cellular/background fluorescence was associated with corresponding enhanced lung enzymatic activity and was partly prevented by specific MPO inhibition. Additional ex vivo phenotyping was performed, confirming that fluorescent cells were neutrophil elastase"1" (PMNs) or CD68+ (AMs). This work is a first step toward "virtual biopsy" of ALI without OLB.
机译:急性肺损伤(ALI)的病理生理学表现得很好,但其在床边的实时评估仍然是一个挑战。当患者尽管支撑疗法后1周后没有改善,医生必须考虑开放的肺活检(OLE)以识别游戏中的过程。在这种情况下通常观察到持续的炎症和修复不足。 OLB既不易于在关键环境中表现,也不是豁免并发症。在此,我们探讨体内肺部肺的内窥镜共焦荧光显微镜(ECFM)结合使用Myeloperoxid酶(MPO)活化的荧光智能探针。 MPO是由多晶核中性粒细胞(PMNS)和肺泡巨噬细胞(AMS)表示的颗粒状酶,催化过氧化酸的合成,过氧化氢的副产物。首先在相关细胞(即AMS和PMNS)和MPO-非表达细胞(作为阴性对照中的体外验证这些探针,然后使用三种大鼠ALI和实时流体成像在体内进行测试ECFM。半定形图像分析显示,在体内探针相关的细胞/背景荧光与相应的增强的肺酶活性相关,并通过特异性MPO抑制部分地防止。进行额外的exvivo表型,证实荧光细胞是中性粒细胞弹性蛋白酶“1”(PMN)或CD68 +(AMS)。这项工作是朝着没有OLB的ALI的“虚拟活检”的第一步。

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