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99锝-六甲基丙烯胺肟显像用于早期检测暴露于高氧或接受脂多糖治疗的大鼠急性肺损伤

99MTc-Hexamethylpropyleneamine Oxime Imaging for Early Detection of Acute Lung Injury in Rats Exposed to Hyperoxia or Lipopolysaccharide Treatment.

作者信息

Audi Said H, Clough Anne V, Haworth Steven T, Medhora Meetha, Ranji Mahsa, Densmore John C, Jacobs Elizabeth R

机构信息

*Department of Biomedical Engineering, Marquette University, Milwaukee, Wisconsin †Division of Pulmonary and Critical Care Medicine, Medical College of Wisconsin, Milwaukee, Wisconsin ‡Zablocki V.A. Medical Center, Milwaukee, Wisconsin §Department of Mathematics, Statistics, and Computer Science, Marquette University, Milwaukee, Wisconsin ||Department of Radiation Oncology, Medical College of Wisconsin, Milwaukee, Wisconsin ¶Department of Electrical Engineering, University of Wisconsin-Milwaukee, Milwaukee, Wisconsin **Department of Surgery, Medical College of Wisconsin, Milwaukee, Wisconsin.

出版信息

Shock. 2016 Oct;46(4):420-30. doi: 10.1097/SHK.0000000000000605.

Abstract

Tc-Hexamethylpropyleneamine oxime (HMPAO) is a clinical single-photon emission computed tomography biomarker of tissue oxidoreductive state. Our objective was to investigate whether HMPAO lung uptake can serve as a preclinical marker of lung injury in two well-established rat models of human acute lung injury (ALI).Rats were exposed to >95% O2 (hyperoxia) or treated with intratracheal lipopolysaccharide (LPS), with first endpoints obtained 24 h later. HMPAO was administered intravenously before and after treatment with the glutathione-depleting agent diethyl maleate (DEM), scintigraphy images were acquired, and HMPAO lung uptake was quantified from the images. We also measured breathing rates, heart rates, oxygen saturation, bronchoalveolar lavage (BAL) cell counts and protein, lung homogenate glutathione (GSH) content, and pulmonary vascular endothelial filtration coefficient (Kf).For hyperoxia rats, HMPAO lung uptake increased after 24 h (134%) and 48 h (172%) of exposure. For LPS-treated rats, HMPAO lung uptake increased (188%) 24 h after injury and fell with resolution of injury. DEM reduced HMPAO uptake in hyperoxia and LPS rats by a greater fraction than in normoxia rats. Both hyperoxia exposure (18%) and LPS treatment (26%) increased lung homogenate GSH content, which correlated strongly with HMPAO uptake. Neither of the treatments had an effect on Kf at 24 h. LPS-treated rats appeared healthy but exhibited mild tachypnea, BAL, and histological evidence of inflammation, and increased wet and dry lung weights. These results suggest the potential utility of HMPAO as a tool for detecting ALI at a phase likely to exhibit minimal clinical evidence of injury.

摘要

锝-六甲基丙烯胺肟(HMPAO)是一种用于临床单光子发射计算机断层扫描的组织氧化还原状态生物标志物。我们的目的是研究在两种成熟的人类急性肺损伤(ALI)大鼠模型中,HMPAO肺摄取是否可作为肺损伤的临床前标志物。将大鼠暴露于>95%氧气(高氧)环境或气管内注射脂多糖(LPS)进行处理,24小时后获取首个终点数据。在用谷胱甘肽消耗剂马来酸二乙酯(DEM)处理前后静脉注射HMPAO,采集闪烁扫描图像,并从图像中对HMPAO肺摄取进行定量分析。我们还测量了呼吸频率、心率、血氧饱和度、支气管肺泡灌洗(BAL)细胞计数和蛋白质、肺匀浆谷胱甘肽(GSH)含量以及肺血管内皮滤过系数(Kf)。对于高氧大鼠,暴露24小时(134%)和48小时(172%)后HMPAO肺摄取增加。对于LPS处理的大鼠,损伤后24小时HMPAO肺摄取增加(188%),并随损伤的消退而下降。与常氧大鼠相比,DEM使高氧和LPS大鼠的HMPAO摄取降低的比例更大。高氧暴露(18%)和LPS处理(26%)均增加了肺匀浆GSH含量,且与HMPAO摄取密切相关。两种处理在24小时时对Kf均无影响。LPS处理的大鼠看似健康,但表现出轻度呼吸急促、BAL及炎症的组织学证据,以及肺湿重和干重增加。这些结果表明,HMPAO作为一种在可能表现出最小临床损伤证据阶段检测ALI的工具具有潜在用途。

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