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基于二氨基荧光素荧光法的生物样本中一氧化氮的测定及生物成像方法

Determination and bioimaging method for nitric oxide in biological specimens by diaminofluorescein fluorometry.

作者信息

Itoh Y, Ma F H, Hoshi H, Oka M, Noda K, Ukai Y, Kojima H, Nagano T, Toda N

机构信息

Research Laboratories, Nippon Shinyaku Co., Ltd., Nishiohji Hachijo Minami-ku, Kyoto, 601, Japan.

出版信息

Anal Biochem. 2000 Dec 15;287(2):203-9. doi: 10.1006/abio.2000.4859.

Abstract

A simple and sensitive assay and a cellular bioimaging method for nitric oxide (NO) were developed using a novel diaminofluorescein DAF-FM and its diacetate. DAF-FM is converted via an NO-specific mechanism to an intensely fluorescent triazole derivative. For the measurement of NO, the triazole derivative of DAF-FM was determined by reversed-phase high-performance liquid chromatography with fluorescence detection. In the presence of 1 microM DAF-FM, the concentrations of NOR-1, an NO donor, in the range of 2-200 nM were linearly related to the fluorescence intensity. This sensitive NO assay enabled us to detect the spontaneous and substance P-induced NO release from isolated porcine coronary arteries, both of which were dependent entirely on the NO synthase activity in vascular endothelial cells. We also obtained fluorescence images of cultured smooth muscle cells of the rat urinary bladder after loading with DAF-FM diacetate. In the cells pretreated with cytokines, the fluorescence intensity increased with time after DAF-FM loading. This increase in the fluorescence intensity was blocked by prior treatment of the muscle cells with an NO synthase inhibitor, N(G)-nitro-l-arginine methyl ester. Therefore, the present novel diaminofluorescein fluorometry should be useful not only for sensitive NO assay, but also for NO imaging in a variety of biological specimens.

摘要

利用新型二氨基荧光素DAF-FM及其二乙酸酯,开发了一种简单灵敏的一氧化氮(NO)检测方法和细胞生物成像方法。DAF-FM通过一种NO特异性机制转化为强荧光三唑衍生物。为了测量NO,通过反相高效液相色谱结合荧光检测来测定DAF-FM的三唑衍生物。在存在1 microM DAF-FM的情况下,NO供体NOR-1的浓度在2-200 nM范围内与荧光强度呈线性相关。这种灵敏的NO检测方法使我们能够检测到从分离的猪冠状动脉中自发释放和由P物质诱导释放的NO,这两种释放都完全依赖于血管内皮细胞中的NO合酶活性。在用DAF-FM二乙酸酯加载后,我们还获得了大鼠膀胱培养平滑肌细胞的荧光图像。在用细胞因子预处理的细胞中,加载DAF-FM后荧光强度随时间增加。这种荧光强度的增加被用NO合酶抑制剂N(G)-硝基-L-精氨酸甲酯预先处理肌肉细胞所阻断。因此,目前这种新型二氨基荧光素荧光测定法不仅应有助于灵敏的NO检测,而且还应有助于在各种生物标本中进行NO成像。

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