Aslam Tashfeen, Miele Amy, Chankeshwara Sunay V, Megia-Fernandez Alicia, Michels Chesney, Akram Ahsan R, McDonald Neil, Hirani Nik, Haslett Chris, Bradley Mark, Dhaliwal Kevin
School of Chemistry , EaStChem , University of Edinburgh , Joseph Black Building, West Mains Road , Edinburgh , EH9 3FJ , UK . Email:
Pulmonary Optical Molecular Imaging Group , MRC/Centre of Inflammation Research , Queen's Medical Research Institute , University of Edinburgh , 47 Little France Crescent , EH16 4TJ , Edinburgh , UK . Email:
Chem Sci. 2015 Aug 1;6(8):4946-4953. doi: 10.1039/c5sc01258a. Epub 2015 Jun 8.
Aberrant fibrogenesis is a feature of many diseases in multiple organ systems. The lysyl oxidase family of enzymes are central to tissue homeostasis and elevated lysyl oxidase activity is implicated in fibroproliferation as well as in cancer stroma. We have synthesised a novel fluorogenic reporter for monitoring lysyl oxidase activity that generates a 3-5 fold increase in fluorescence following probe activation in ventilating fibrotic asinine lung and human lung tissue. The probe termed "oLOX" can provide real-time measurement of lysyl oxidase activity in a number of biological settings and is tractable from an setting to man.
异常纤维生成是多器官系统中许多疾病的一个特征。赖氨酰氧化酶家族的酶对于组织稳态至关重要,而赖氨酰氧化酶活性升高与纤维增殖以及癌症基质有关。我们合成了一种新型荧光报告分子,用于监测赖氨酰氧化酶活性,该报告分子在通气的纤维化驴肺和人肺组织中探针激活后荧光增强3 - 5倍。这种名为“oLOX”的探针能够在多种生物学环境中实时测量赖氨酰氧化酶活性,并且从动物模型到人体都易于操作。