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通过电子顺磁共振对脓毒症大鼠脑内一氧化氮进行活体检测。

In vivo nitric oxide detection in the septic rat brain by electron paramagnetic resonance.

作者信息

Suzuki Y, Fujii S, Numagami Y, Tominaga T, Yoshimoto T, Yoshimura T

机构信息

Division of Bioinorganic Chemistry, Institute for Life Support Technology, Yamagata Technopolis Foundation, Matsuei, Japan.

出版信息

Free Radic Res. 1998 Mar;28(3):293-9. doi: 10.3109/10715769809069281.

DOI:10.3109/10715769809069281
PMID:9688215
Abstract

To detect nitric oxide (NO) in the rat brain during lipopolysaccharide (LPS)-induced sepsis, electron paramagnetic resonance (EPR) was employed with the NO trapping technique, using an iron and N,N-diethyldithiocarbamate (DETC) complex. An X-band (about 9.5 GHz) EPR system detected a triplet signal (g = 2.038) derived from an NO-Fe-DETC complex being superimposed on the g(perpendicular) signal of Cu-DETC complex at liquid nitrogen temperature. The height of the triplet signal peaked seven hours after injection of 40 mg/kg of LPS, and over 25 x 10(4) U/kg of IFN-gamma enhanced the LPS-induced NO formation. Pretreatment with N(G)-monomethyl-L-arginine (NMMA), an NO synthase inhibitor, deleted only the triplet signal. A triplet signal (g(iso) = 2.040, aN = 1.28 mT) derived from the NO-Fe-DETC complex was also observed at ambient temperature. Then, a home-built 700 MHz EPR system was used to detect an NO signal in the septic rat brain in vivo. We successfully monitored the NO-Fe-DETC signal in the head region of a living rat under the condition that provided maximum height of the NO-Fe-DETC signal in the X-band EPR study. Pretreatment with NMMA again deleted the NO-Fe-DETC signal. This is the first EPR observation of endogenous NO in the brain of living rats.

摘要

为了检测脂多糖(LPS)诱导的脓毒症大鼠脑中的一氧化氮(NO),采用电子顺磁共振(EPR)结合NO捕获技术,使用铁与N,N - 二乙基二硫代氨基甲酸盐(DETC)的复合物。在液氮温度下,一个X波段(约9.5 GHz)的EPR系统检测到源自NO - Fe - DETC复合物的三重态信号(g = 2.038)叠加在Cu - DETC复合物的g(垂直)信号上。在注射40 mg/kg LPS后7小时,三重态信号的高度达到峰值,超过25×10⁴ U/kg的干扰素 - γ增强了LPS诱导的NO形成。用NO合酶抑制剂N(G) - 单甲基 - L - 精氨酸(NMMA)预处理仅消除了三重态信号。在室温下也观察到源自NO - Fe - DETC复合物的三重态信号(g(iso) = 2.040,aN = 1.28 mT)。然后,使用自制的700 MHz EPR系统在体内检测脓毒症大鼠脑中的NO信号。在X波段EPR研究中提供NO - Fe - DETC信号最大高度的条件下,我们成功监测了活大鼠头部区域的NO - Fe - DETC信号。再次用NMMA预处理消除了NO - Fe - DETC信号。这是首次在活大鼠脑中通过EPR观察到内源性NO。

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