Liu Shixin, Luo Rong, Xiang Qi, Xu Xianfang, Qiu Liqin, Pang Jiyan
School of Chemistry & Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, China.
Institute of Biomedicine & Guangdong Provincial Key Laboratory of Bioengineering Medicine, Jinan University, Guangzhou 510632, China.
Mar Drugs. 2015 Feb 12;13(2):948-73. doi: 10.3390/md13020948.
In this work, we designed and synthesized a series of amide derivatives (1-13), benzoxazine derivatives (16-28) and amino derivatives (29-30) from xyloketal B. All 28 new derivatives and seven known compounds (14, 15, 31-35) were evaluated for their protection against H2O2-induced HUVEC injury. 23 and 24 exhibited more potential protective activities than other derivatives; and the EC50 values of them and the leading compound 31 (xyloketal B) were 5.10, 3.59 and 15.97 μM, respectively. Meanwhile, a comparative molecular similarity indices analysis (CoMSIA) was constructed to explain the structural activity relationship of these xyloketal derivatives. This 3D QSAR model from CoMSIA suggested that the derived model exhibited good predictive ability in the external test-set validation. Derivative 24 fit well with the COMSIA map, therefore it possessed the highest activity of all compounds. Compounds 23, 24 and 31 (xyloketal B) were further to examine in the JC-1 mitochondrial membrane potential (MMP) assay of HUVECs using flow cytometry (FCM). The result indicated that 23 and 24 significantly inhibited H2O2-induced decrease of the cell mitochondrial membrane potential (ΔΨm) at 25 μM. Collectively, the protective effects of xyloketals on H2O2-induced endothelial cells may be generated from oxidation action by restraining ROS and reducing the MMP.
在本研究中,我们从木酮糖缩醛B设计并合成了一系列酰胺衍生物(1-13)、苯并恶嗪衍生物(16-28)和氨基衍生物(29-30)。对所有28种新衍生物和7种已知化合物(14、15、31-35)进行了抗H2O2诱导的人脐静脉内皮细胞(HUVEC)损伤的评估。23和24表现出比其他衍生物更强的潜在保护活性;它们以及先导化合物31(木酮糖缩醛B)的半数有效浓度(EC50)值分别为5.10、3.59和15.97μM。同时,构建了比较分子相似性指数分析(CoMSIA)以解释这些木酮糖缩醛衍生物的构效关系。来自CoMSIA的该三维定量构效关系(3D QSAR)模型表明,该衍生模型在外部测试集验证中表现出良好的预测能力。衍生物24与CoMSIA图谱拟合良好,因此它具有所有化合物中最高的活性。化合物23、24和31(木酮糖缩醛B)进一步通过流式细胞术(FCM)在HUVECs的JC-1线粒体膜电位(MMP)测定中进行检测。结果表明,在25μM时,23和24显著抑制H2O2诱导的细胞线粒体膜电位(ΔΨm)降低。总体而言,木酮糖缩醛对H2O2诱导的内皮细胞的保护作用可能源于通过抑制活性氧(ROS)和降低线粒体膜电位的氧化作用。