Piknova Barbora, Gladwin Mark T, Schechter Alan N, Hogg Neil
Department of Biophysics and Free Radical Research Center, Medical College of Wisconsin, Milwaukee, Wisconsin 53226 , USA.
J Biol Chem. 2005 Dec 9;280(49):40583-8. doi: 10.1074/jbc.M506292200. Epub 2005 Sep 23.
The reactions of nitric oxide with hemoglobin play an important role in explaining the vascular biology of this free radical. It is perhaps surprising that the level of nitrosylhemoglobin (HbNO) in which NO is bound to the ferrous hemoglobin heme in whole human blood under basal and stimulated conditions is a matter of some controversy, with measurements ranging from <1 nm to close to 10 mum. In order to examine HbNO levels in human blood by using EPR spectroscopy, we have developed a regression-based spectral analysis technique that has a detection level of about 200 nm HbNO. We have utilized this methodology to detect the level of HbNO under basal conditions and during NO inhalation. The major findings of this study are as follows. (i) HbNO can be accurately detected and quantified in whole blood with a detection limit of approximately 200 nm. (ii) By using regression analysis, levels of HbNO as low as 0.5-1 mum can be deconvoluted into component species. (iii) HbNO is present at less than 200 nm at basal conditions in both arterial and venous blood and is formed at a level of 0.5-2.5 mum upon inhalation of 80 ppm NO. (iv) The levels of HbNO detected by EPR are remarkably close (within a factor of 2) to those detected by tri-iodide-based chemiluminescence and much smaller than those detected by photolysis chemiluminescence. (v) The half-time of HbNO in vivo is approximately 40 min.
一氧化氮与血红蛋白的反应在解释这种自由基的血管生物学方面起着重要作用。或许令人惊讶的是,在基础和刺激条件下,全血中一氧化氮与亚铁血红蛋白血红素结合的亚硝基血红蛋白(HbNO)水平存在一些争议,测量值范围从<1 nM到接近10 μM。为了通过电子顺磁共振光谱法检测人血中的HbNO水平,我们开发了一种基于回归的光谱分析技术,其检测水平约为200 nM HbNO。我们利用这种方法检测基础条件下和一氧化氮吸入期间的HbNO水平。本研究的主要发现如下:(i)全血中的HbNO可以被准确检测和定量,检测限约为200 nM。(ii)通过回归分析,低至0.5 - 1 μM的HbNO水平可以被解卷积为不同的组分。(iii)在基础条件下,动脉血和静脉血中的HbNO含量均低于200 nM,吸入80 ppm一氧化氮后,其水平会升高至0.5 - 2.5 μM。(iv)通过电子顺磁共振检测到的HbNO水平与基于三碘化物的化学发光检测到的水平非常接近(相差不超过2倍),且远低于光解化学发光检测到的水平。(v)体内HbNO的半衰期约为40分钟。