Amorim Madeira Paulo J, Sitoe Ana Raquel Fernandes, Gonçalves Daniel, Rodrigues Tiago, Guedes Rita C, Lopes Francisca, Moreira Rui, Bronze M Rosário
Research Institute for Medicines (iMed.ULisboa), Faculdade de Farmácia, Universidade de Lisboa, 1649-003, Lisbon, Portugal,
J Am Soc Mass Spectrom. 2014 Sep;25(9):1650-61. doi: 10.1007/s13361-014-0940-x. Epub 2014 Jul 8.
The gas-phase behavior of 12 quinolon-4(1H)-imine derivatives with antiplasmodial activity was investigated using electrospray ionization tandem mass spectrometry together with collision induced dissociation and density functional theory (DFT) calculations. The most probable protonation site was predicted by calculating the proton affinity (PA) values for each possible protonation site and it was found to be the imine nitrogen for all compounds under study. Fragmentation pathways of the protonated molecules were proposed and the assignment of product ion structures was performed taking into account theoretical calculations. The nature of the quinoline substituent was found to influence the gas-phase behavior of the compounds under study. The data acquired allowed to bracket the proton affinity of the quinolin-4-imine scaffold, which can be a useful starting point to choose appropriate references for determining PA values of this scaffold.
采用电喷雾电离串联质谱联用碰撞诱导解离和密度泛函理论(DFT)计算,研究了12种具有抗疟活性的喹诺酮-4(1H)-亚胺衍生物的气相行为。通过计算每个可能质子化位点的质子亲和力(PA)值预测最可能的质子化位点,发现所研究的所有化合物的质子化位点均为亚胺氮。提出了质子化分子的碎裂途径,并结合理论计算对产物离子结构进行了归属。发现喹啉取代基的性质会影响所研究化合物的气相行为。所获得的数据有助于确定喹啉-4-亚胺骨架的质子亲和力范围,这可为选择合适的参考物以确定该骨架的PA值提供有用的起点。