Ueno Shunji, Kashimoto Takashige, Susa Nobuyuki, Wada Kohshin, Ito Nobuhiko, Takeda-Homma Shino, Nishimura Yoshikazu, Sugiyama Masayasu
School of Veterinary Medicine and Animal Sciences, Kitasato University, Laboratory of Veterinary Public Health, Higashi 23-35-1, Towada, Japan.
Free Radic Res. 2006 Sep;40(9):944-51. doi: 10.1080/10715760600817963.
Appropriate experimental conditions for the estimation of hydroxyl radical generation by salicylate hydroxylation were determined for multiple organs of X-irradiated mice in vivo. The in vitro experiments showed that there were significant correlations between the salicylic acid (SA) concentration, the amount of 2,3-dihydroxy benzoic acid (2,3-DHBA) and the X-ray exposure dose, and we obtained two linear-regression equations to calculate the amounts of hydroxyl radicals generated by the X-irradiation. The optimum dosage of SA and the appropriate sampling time for in vivo experiments was determined, and significant increases in the ratio of 2,3-DHBA to SA were detected in several organs of mice after X-irradiation. The hydroxyl radical equivalents of the 2,3-DHBA increases were also calculated. Our results clearly demonstrated the usefulness of the salicylate hydroxylation method in estimating hydroxyl radical generation in multiple organs in vivo.
确定了体内X射线照射小鼠多个器官时通过水杨酸羟基化估计羟基自由基生成的合适实验条件。体外实验表明,水杨酸(SA)浓度、2,3 - 二羟基苯甲酸(2,3 - DHBA)量与X射线照射剂量之间存在显著相关性,并且我们获得了两个线性回归方程来计算X射线照射产生的羟基自由基量。确定了体内实验中SA的最佳剂量和合适的采样时间,并且在X射线照射后小鼠的几个器官中检测到2,3 - DHBA与SA的比率显著增加。还计算了2,3 - DHBA增加量的羟基自由基当量。我们的结果清楚地证明了水杨酸羟基化方法在估计体内多个器官中羟基自由基生成方面的有用性。