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High-sensitive imaging method of singlet oxygen and superoxide anion in photodynamic and sonodynamic actions

机译:光动力学和超氧动力学作用中单线氧和超氧化物阴离子的高敏感成像方法

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A novel method of photodynamic diagnosis (PDD) of cancer mediated by chemiluminescence (CL) probe is presented. The mechanism for photodynamic therapy (PDT) involves reactive oxygen species (ROS), such as singlet oxygen (~1O_2) and superoxide (O_2~-), generated by during the photochemical process. Both ~1O_2 and O_2~- can react with Cypridina luciferin analogue (FCLA), a highly selective CL probe for detecting the ROS. Chemiluminescence from the reaction of FCLA with the ROS, at about 530 nm, was detected by a highly sensitive ICCD system. The CL was markedly inhibited by the addition of 10 mmol/L sodium azide (NaN_3) in a sample solution. Similar phenomena, with lesser extents of changes, were observed at the additions of 10 μmol/L superoxide dismutase (SOD), 10 mmol/L mannitol, and 100 μg/mL catalase, respectively. This indicates that the detected CL signals were mainly from ROS generated during the photosensitization reactions. Also, the chemiluminescence method was used to detect the ROS during sonodynamic action, both in vitro and in vivo. ROS formation during sonosensitizations of HpD and ATX-70 were detected using our newly-developed imaging technique, in real time, on tumor bearing animals. This method can provide a new means in clinics for tumor diagnosis.
机译:的通过化学发光介导的癌症光动力诊断(PDD)的新方法(CL)探针被呈现。用于光动力疗法(PDT)的机制涉及反应性氧物质(ROS),例如单线态氧(〜1O_2)和超(O_2〜 - ),在光化学过程所产生的。既〜1O_2和O_2〜 - 可以与海萤荧光素反应类似物(FCLA),高选择性的CL探针用于检测ROS。从FCLA的反应与ROS,在约530nm的化学发光,用高敏感ICCD系统检测到。该CL显着通过在试样溶液中加入10毫摩尔/ L叠氮化钠(NaN_3)的抑制。类似的现象,与变化的程度较小,在10μmol/ L的超氧化物歧化酶(SOD),10毫摩尔/ L甘露糖醇的加入进行观察,和100微克/毫升过氧化氢酶,分别。这表明所检测到的信号CL主要来自在光敏反应产生ROS。此外,使用化学发光方法声动力动作期间检测ROS,无论是在体外和体内。使用我们新开发的成像技术,在实时,带有肿瘤的动物血卟啉和ATX-70的sonosensitizations中ROS形成进行检测。这种方法可以在临床肿瘤诊断提供新手段。

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