Liu Ying, Zhang Xia, Zhang Jingpu, Hu Changqin
National Institutes for Food and Drug Control, Beijing, China.
Institute of Medicinal Biotechnology, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing, China.
Front Pharmacol. 2019 Jan 29;10:31. doi: 10.3389/fphar.2019.00031. eCollection 2019.
Cephalosporins are beta-lactam antibiotics that are widely used in China. Five generations of cephalosporins have been introduced in clinical practice to date; moreover, some new candidates are also undergoing clinical evaluations. To improve the success rates of new drug development, we need to have a comprehensive understanding about the relationship between the structure of cephalosporins and the toxicity that it induces at an early stage. In the cephalosporins toxicity study using zebrafish, the drug absorption is a key point. In this study, we determined the absorption of cephalosporins in zebrafish during toxicity test. The internal concentrations of 19 cephalosporins in zebrafish were determined using a developed liquid chromatography-tandem mass spectrometry (LC-MS/MS) method. Furthermore, a quantitative structure-activity relationship (QSAR) model was established by multilinear regression; moreover, it was used to predict the absorption of cephalosporins in zebrafish. During leave-one-out cross-validation, a satisfactory performance was obtained with a predictive ability ( ) of 0.839. The prediction ability of the model was further confirmed when the predictive ability ( ) was 0.859 in external prediction. The best QSAR model, which was based on five molecular descriptors, exhibited a promising predictive performance and robustness. In experiments involving drug toxicity, the developed QSAR model was used to estimate internal concentrations of cephalosporins. Thus, the toxicity results were correlated with the internal concentration of the drug within the larvae. The developed model served as a new powerful tool in zebrafish toxicity tests.
头孢菌素是一类β-内酰胺抗生素,在中国被广泛使用。迄今为止,已有五代头孢菌素应用于临床实践;此外,一些新的候选药物也正在进行临床评估。为了提高新药研发的成功率,我们需要在早期全面了解头孢菌素的结构与其诱导的毒性之间的关系。在使用斑马鱼进行的头孢菌素毒性研究中,药物吸收是一个关键点。在本研究中,我们在毒性试验期间测定了斑马鱼体内头孢菌素的吸收情况。使用一种开发的液相色谱-串联质谱(LC-MS/MS)方法测定了斑马鱼体内19种头孢菌素的内部浓度。此外,通过多元线性回归建立了定量构效关系(QSAR)模型;而且,该模型被用于预测头孢菌素在斑马鱼体内的吸收情况。在留一法交叉验证期间,预测能力( )为0. —— 原文此处括号内内容缺失完整表述,无法准确翻译—— 时获得了令人满意的性能。当外部预测的预测能力( )为0.859时,模型的预测能力得到了进一步证实。基于五个分子描述符的最佳QSAR模型表现出了良好的预测性能和稳健性。在涉及药物毒性的实验中,所开发的QSAR模型被用于估计头孢菌素的内部浓度。因此,毒性结果与幼虫体内药物的内部浓度相关。所开发的模型成为斑马鱼毒性试验中的一种新的有力工具。