Gross Shimon, Gammon Seth T, Moss Britney L, Rauch Daniel, Harding John, Heinecke Jay W, Ratner Lee, Piwnica-Worms David
Molecular Imaging Center, Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, Missouri, USA.
Nat Med. 2009 Apr;15(4):455-61. doi: 10.1038/nm.1886. Epub 2009 Mar 22.
The myeloperoxidase (MPO) system of activated phagocytes is central to normal host defense mechanisms, and dysregulated MPO contributes to the pathogenesis of inflammatory disease states ranging from atherosclerosis to cancer. Here we show that upon systemic administration, the small molecule luminol enables noninvasive bioluminescence imaging (BLI) of MPO activity in vivo. Luminol-BLI allowed quantitative longitudinal monitoring of MPO activity in animal models of acute dermatitis, mixed allergic contact hypersensitivity, focal arthritis and spontaneous large granular lymphocytic tumors. Bioluminescence colocalized with histological sites of inflammation and was totally abolished in gene-deleted Mpo(-/-) mice, despite massive tissue infiltration of neutrophils and activated eosinophils, indicating that eosinophil peroxidase did not contribute to luminol-BLI in vivo. Thus, luminol-BLI provides a noninvasive, specific and highly sensitive optical readout of phagocyte-mediated MPO activity in vivo and may enable new diagnostic applications in a wide range of acute and chronic inflammatory conditions.
活化吞噬细胞的髓过氧化物酶(MPO)系统是正常宿主防御机制的核心,而MPO失调会导致从动脉粥样硬化到癌症等一系列炎症性疾病的发病。在此我们表明,经全身给药后,小分子鲁米诺能够对体内MPO活性进行无创生物发光成像(BLI)。鲁米诺-生物发光成像允许在急性皮炎、混合性过敏性接触超敏反应、局灶性关节炎和自发性大颗粒淋巴细胞肿瘤的动物模型中对MPO活性进行定量纵向监测。生物发光与炎症组织学部位共定位,并且在基因缺失的Mpo(-/-)小鼠中完全消失,尽管中性粒细胞和活化嗜酸性粒细胞大量浸润组织,这表明嗜酸性粒细胞过氧化物酶在体内对鲁米诺-生物发光成像没有贡献。因此,鲁米诺-生物发光成像提供了一种体内吞噬细胞介导的MPO活性的无创、特异性和高灵敏度光学读数,并可能在广泛的急慢性炎症病症中实现新的诊断应用。