Basly J P, Basly I, Bernard M
UPRES EA 1085, Limoges, France.
Int J Radiat Biol. 1999 Feb;75(2):259-63. doi: 10.1080/095530099140726.
This paper reports experimental data on the ESR identification of four irradiated cephalosporins (cefpodoxime, cefsulodin, cefixime and ceftizoxime).
Equations to describe the ESR curves versus the dose and storage time were developed using mathematical procedures.
Limits of detection (LOD) and limits of quantification (LOQ), estimated on the basis of the S/N ratios are 1.0+/-0.5 kGy and 2.5+/-0.5 kGy respectively. The yield of free radicals are in the range 4.6 10(19) - 2.2 10(20) radicals mol(-1) (G values from 0.1 to 0.4). Besides a very unstable situation (cefsulodin), the time limit of detection of free radicals after storage ranges from about 1 year to over 2 years. These time intervals are comparable with the shelf-life of the antibiotics and to the time limits found for 10 other cephalosporins described previously. Apart from qualitative detection, ESR spectrometry can be used for dose estimation. Exponential loss of ESR signal (first-order reaction) correlates well with the data.
Given the sensitivity of ESR spectrometry, this experimental technique is promising for identification of irradiated cephalosporins.
本文报道了关于四种辐照头孢菌素(头孢泊肟、磺苄西林、头孢克肟和头孢唑肟)的电子自旋共振(ESR)鉴定的实验数据。
使用数学方法建立了描述ESR曲线与剂量和储存时间关系的方程。
基于信噪比估计的检测限(LOD)和定量限(LOQ)分别为1.0±0.5 kGy和2.5±0.5 kGy。自由基产率在4.6×10¹⁹ - 2.2×10²⁰个自由基·mol⁻¹范围内(G值为0.1至0.4)。除了一种非常不稳定的情况(磺苄西林)外,储存后自由基的检测时间限从约1年到超过2年不等。这些时间间隔与抗生素的保质期以及先前描述的其他10种头孢菌素的时间限相当。除了定性检测外,ESR光谱法还可用于剂量估计。ESR信号的指数衰减(一级反应)与数据相关性良好。
鉴于ESR光谱法的灵敏度,该实验技术在辐照头孢菌素的鉴定方面具有前景。